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Search for the chiral magnetic wave using anisotropic flow of identified particles at energies available at the BNL Relativistic Heavy Ion Collider
The chiral magnetic wave (CMW) has been theorized to propagate in the deconfined nuclear medium formed in high-energy heavy-ion collisions and to cause a difference in elliptic flow (<math><msub><mi>v</mi><mn>2</mn></msub></math>) between negatively an...
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Lenguaje: | eng |
Publicado: |
2022
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1103/PhysRevC.108.014908 http://cds.cern.ch/record/2865446 |
_version_ | 1780978042042056704 |
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author | Abdulhamid, M.I. Aboona, B.E. Adam, J. Adams, J.R. Agakishiev, G. Aggarwal, I. Aggarwal, M.M. Ahammed, Z. Aitbaev, A. Alekseev, I. Anderson, D.M. Aparin, A. Aslam, S. Atchison, J. Averichev, G.S. Bairathi, V. Baker, W. Ball Cap, J.G. Barish, K. Bhagat, P. Bhasin, A. Bhatta, S. Bordyuzhin, I.G. Brandenburg, J.D. Brandin, A.V. Cai, X.Z. Caines, H. Calderón de la Barca Sánchez, M. Cebra, D. Ceska, J. Chakaberia, I. Chan, B.K. Chang, Z. Chatterjee, A. Chen, D. Chen, J. Chen, J.H. Chen, Z. Cheng, J. Cheng, Y. Choudhury, S. Christie, W. Chu, X. Crawford, H.J. Dale-Gau, G. Das, A. Daugherity, M. Dedovich, T.G. Deppner, I.M. Derevschikov, A.A. Dhamija, A. Di Carlo, L. Didenko, L. Dixit, P. Dong, X. Drachenberg, J.L. Duckworth, E. Dunlop, J.C. Engelage, J. Eppley, G. Esumi, S. Evdokimov, O. Ewigleben, A. Eyser, O. Fatemi, R. Fazio, S. Feng, C.J. Feng, Y. Finch, E. Fisyak, Y. Flor, F.A. Fu, C. Geurts, F. Ghimire, N. Gibson, A. Gopal, K. Gou, X. Grosnick, D. Gupta, A. Hamed, A. Han, Y. Harasty, M.D. Harris, J.W. Harrison-Smith, H. He, W. He, X.H. He, Y. Hu, C. Hu, Q. Hu, Y. Huang, H. Huang, H.Z. Huang, S.L. Huang, T. Huang, X. Huang, Y. Huang, Y. Humanic, T.J. Isenhower, D. Isshiki, M. Jacobs, W.W. Jalotra, A. Jena, C. Ji, Y. Jia, J. Jin, C. Ju, X. Judd, E.G. Kabana, S. Kabir, M.L. Kalinkin, D. Kang, K. Kapukchyan, D. Keane, D. Kechechyan, A. Kelsey, M. Kimelman, B. Kiselev, A. Knospe, A.G. Ko, H.S. Kochenda, L. Korobitsin, A.A. Kravtsov, P. Kumar, L. Kumar, S. Kunnawalkam Elayavalli, R. Lacey, R. Landgraf, J.M. Lebedev, A. Lednicky, R. Lee, J.H. Leung, Y.H. Lewis, N. Li, C. Li, W. Li, X. Li, Y. Li, Y. Li, Z. Liang, X. Liang, Y. Lin, T. Liu, C. Liu, F. Liu, G. Liu, H. Liu, H. Liu, L. Liu, T. Liu, X. Liu, Y. Liu, Z. Ljubicic, T. Llope, W.J. Lomicky, O. Longacre, R.S. Loyd, E.M. Lu, T. Lukow, N.S. Luo, X.F. Luong, V.B. Ma, L. Ma, R. Ma, Y.G. Magdy, N. Mallick, D. Margetis, S. Matis, H.S. Mazer, J.A. McNamara, G. Mi, K. Minaev, N.G. Mohanty, B. Mondal, M.M. Mooney, I. Morozov, D.A. Mudrokh, A. Nagy, M.I. Nain, A.S. Nam, J.D. Nasim, M. Neff, D. Nelson, J.M. Nemes, D.B. Nie, M. Nigmatkulov, G. Niida, T. Nishitani, R. Nogach, L.V. Nonaka, T. Odyniec, G. Ogawa, A. Oh, S. Okorokov, V.A. Okubo, K. Page, B.S. Pak, R. Pan, J. Pandav, A. Pandey, A.K. Panebratsev, Y. Pani, T. Parfenov, P. Paul, A. Perkins, C. Pokhrel, B.R. Posik, M. Protzman, T. Pruthi, N.K. Putschke, J. Qin, Z. Qiu, H. Quintero, A. Racz, C. Radhakrishnan, S.K. Raha, N. Ray, R.L. Ritter, H.G. Robertson, C.W. Rogachevsky, O.V. Rosales Aguilar, M.A. Roy, D. Ruan, L. Sahoo, A.K. Sahoo, N.R. Sako, H. Salur, S. Samigullin, E. Sato, S. Schmidke, W.B. Schmitz, N. Seger, J. Seto, R. Seyboth, P. Shah, N. Shahaliev, E. Shanmuganathan, P.V. Shao, T. Sharma, M. Sharma, N. Sharma, R. Sharma, S.R. Sheikh, A.I. Shen, D.Y. Shen, K. Shi, S.S. Shi, Y. Shou, Q.Y. Si, F. Singh, J. Singha, S. Sinha, P. Skoby, M.J. Söhngen, Y. Song, Y. Srivastava, B. Stanislaus, T.D.S. Stewart, D.J. Strikhanov, M. Stringfellow, B. Su, Y. Sun, C. Sun, X. Sun, Y. Sun, Y. Surrow, B. Svirida, D.N. Sweger, Z.W. Tamis, A. Tang, A.H. Tang, Z. Taranenko, A. Tarnowsky, T. Thomas, J.H. Tlusty, D. Todoroki, T. Tokarev, M.V. Tomkiel, C.A. Trentalange, S. Tribble, R.E. Tribedy, P. Tsai, O.D. Tsang, C.Y. Tu, Z. Tyler, J. Ullrich, T. Underwood, D.G. Upsal, I. Van Buren, G. Vasiliev, A.N. Verkest, V. Videbæk, F. Vokal, S. Voloshin, S.A. Wang, F. Wang, G. Wang, J.S. Wang, X. Wang, Y. Wang, Y. Wang, Y. Wang, Z. Webb, J.C. Weidenkaff, P.C. Westfall, G.D. Wieman, H. Wilks, G. Wissink, S.W. Wu, J. Wu, J. Wu, X. Wu, Y. Xi, B. Xiao, Z.G. Xie, G. Xie, W. Xu, H. Xu, N. Xu, Q.H. Xu, Y. Xu, Y. Xu, Z. Xu, Z. Yan, G. Yan, Z. Yang, C. Yang, Q. Yang, S. Yang, Y. Ye, Z. Ye, Z. Yi, L. Yip, K. Yu, Y. Zha, W. Zhang, C. Zhang, D. Zhang, J. Zhang, S. Zhang, W. Zhang, X. Zhang, Y. Zhang, Y. Zhang, Y. Zhang, Z.J. Zhang, Z. Zhang, Z. Zhao, F. Zhao, J. Zhao, M. Zhou, C. Zhou, J. Zhou, S. Zhou, Y. Zhu, X. Zurek, M. Zyzak, M. |
author_facet | Abdulhamid, M.I. Aboona, B.E. Adam, J. Adams, J.R. Agakishiev, G. Aggarwal, I. Aggarwal, M.M. Ahammed, Z. Aitbaev, A. Alekseev, I. Anderson, D.M. Aparin, A. Aslam, S. Atchison, J. Averichev, G.S. Bairathi, V. Baker, W. Ball Cap, J.G. Barish, K. Bhagat, P. Bhasin, A. Bhatta, S. Bordyuzhin, I.G. Brandenburg, J.D. Brandin, A.V. Cai, X.Z. Caines, H. Calderón de la Barca Sánchez, M. Cebra, D. Ceska, J. Chakaberia, I. Chan, B.K. Chang, Z. Chatterjee, A. Chen, D. Chen, J. Chen, J.H. Chen, Z. Cheng, J. Cheng, Y. Choudhury, S. Christie, W. Chu, X. Crawford, H.J. Dale-Gau, G. Das, A. Daugherity, M. Dedovich, T.G. Deppner, I.M. Derevschikov, A.A. Dhamija, A. Di Carlo, L. Didenko, L. Dixit, P. Dong, X. Drachenberg, J.L. Duckworth, E. Dunlop, J.C. Engelage, J. Eppley, G. Esumi, S. Evdokimov, O. Ewigleben, A. Eyser, O. Fatemi, R. Fazio, S. Feng, C.J. Feng, Y. Finch, E. Fisyak, Y. Flor, F.A. Fu, C. Geurts, F. Ghimire, N. Gibson, A. Gopal, K. Gou, X. Grosnick, D. Gupta, A. Hamed, A. Han, Y. Harasty, M.D. Harris, J.W. Harrison-Smith, H. He, W. He, X.H. He, Y. Hu, C. Hu, Q. Hu, Y. Huang, H. Huang, H.Z. Huang, S.L. Huang, T. Huang, X. Huang, Y. Huang, Y. Humanic, T.J. Isenhower, D. Isshiki, M. Jacobs, W.W. Jalotra, A. Jena, C. Ji, Y. Jia, J. Jin, C. Ju, X. Judd, E.G. Kabana, S. Kabir, M.L. Kalinkin, D. Kang, K. Kapukchyan, D. Keane, D. Kechechyan, A. Kelsey, M. Kimelman, B. Kiselev, A. Knospe, A.G. Ko, H.S. Kochenda, L. Korobitsin, A.A. Kravtsov, P. Kumar, L. Kumar, S. Kunnawalkam Elayavalli, R. Lacey, R. Landgraf, J.M. Lebedev, A. Lednicky, R. Lee, J.H. Leung, Y.H. Lewis, N. Li, C. Li, W. Li, X. Li, Y. Li, Y. Li, Z. Liang, X. Liang, Y. Lin, T. Liu, C. Liu, F. Liu, G. Liu, H. Liu, H. Liu, L. Liu, T. Liu, X. Liu, Y. Liu, Z. Ljubicic, T. Llope, W.J. Lomicky, O. Longacre, R.S. Loyd, E.M. Lu, T. Lukow, N.S. Luo, X.F. Luong, V.B. Ma, L. Ma, R. Ma, Y.G. Magdy, N. Mallick, D. Margetis, S. Matis, H.S. Mazer, J.A. McNamara, G. Mi, K. Minaev, N.G. Mohanty, B. Mondal, M.M. Mooney, I. Morozov, D.A. Mudrokh, A. Nagy, M.I. Nain, A.S. Nam, J.D. Nasim, M. Neff, D. Nelson, J.M. Nemes, D.B. Nie, M. Nigmatkulov, G. Niida, T. Nishitani, R. Nogach, L.V. Nonaka, T. Odyniec, G. Ogawa, A. Oh, S. Okorokov, V.A. Okubo, K. Page, B.S. Pak, R. Pan, J. Pandav, A. Pandey, A.K. Panebratsev, Y. Pani, T. Parfenov, P. Paul, A. Perkins, C. Pokhrel, B.R. Posik, M. Protzman, T. Pruthi, N.K. Putschke, J. Qin, Z. Qiu, H. Quintero, A. Racz, C. Radhakrishnan, S.K. Raha, N. Ray, R.L. Ritter, H.G. Robertson, C.W. Rogachevsky, O.V. Rosales Aguilar, M.A. Roy, D. Ruan, L. Sahoo, A.K. Sahoo, N.R. Sako, H. Salur, S. Samigullin, E. Sato, S. Schmidke, W.B. Schmitz, N. Seger, J. Seto, R. Seyboth, P. Shah, N. Shahaliev, E. Shanmuganathan, P.V. Shao, T. Sharma, M. Sharma, N. Sharma, R. Sharma, S.R. Sheikh, A.I. Shen, D.Y. Shen, K. Shi, S.S. Shi, Y. Shou, Q.Y. Si, F. Singh, J. Singha, S. Sinha, P. Skoby, M.J. Söhngen, Y. Song, Y. Srivastava, B. Stanislaus, T.D.S. Stewart, D.J. Strikhanov, M. Stringfellow, B. Su, Y. Sun, C. Sun, X. Sun, Y. Sun, Y. Surrow, B. Svirida, D.N. Sweger, Z.W. Tamis, A. Tang, A.H. Tang, Z. Taranenko, A. Tarnowsky, T. Thomas, J.H. Tlusty, D. Todoroki, T. Tokarev, M.V. Tomkiel, C.A. Trentalange, S. Tribble, R.E. Tribedy, P. Tsai, O.D. Tsang, C.Y. Tu, Z. Tyler, J. Ullrich, T. Underwood, D.G. Upsal, I. Van Buren, G. Vasiliev, A.N. Verkest, V. Videbæk, F. Vokal, S. Voloshin, S.A. Wang, F. Wang, G. Wang, J.S. Wang, X. Wang, Y. Wang, Y. Wang, Y. Wang, Z. Webb, J.C. Weidenkaff, P.C. Westfall, G.D. Wieman, H. Wilks, G. Wissink, S.W. Wu, J. Wu, J. Wu, X. Wu, Y. Xi, B. Xiao, Z.G. Xie, G. Xie, W. Xu, H. Xu, N. Xu, Q.H. Xu, Y. Xu, Y. Xu, Z. Xu, Z. Yan, G. Yan, Z. Yang, C. Yang, Q. Yang, S. Yang, Y. Ye, Z. Ye, Z. Yi, L. Yip, K. Yu, Y. Zha, W. Zhang, C. Zhang, D. Zhang, J. Zhang, S. Zhang, W. Zhang, X. Zhang, Y. Zhang, Y. Zhang, Y. Zhang, Z.J. Zhang, Z. Zhang, Z. Zhao, F. Zhao, J. Zhao, M. Zhou, C. Zhou, J. Zhou, S. Zhou, Y. Zhu, X. Zurek, M. Zyzak, M. |
author_sort | Abdulhamid, M.I. |
collection | CERN |
description | The chiral magnetic wave (CMW) has been theorized to propagate in the deconfined nuclear medium formed in high-energy heavy-ion collisions and to cause a difference in elliptic flow (<math><msub><mi>v</mi><mn>2</mn></msub></math>) between negatively and positively charged hadrons. Experimental data consistent with the CMW have been reported by the STAR Collaboration at the Relativistic Heavy Ion Collider (RHIC), based on the charge asymmetry dependence of the pion <math><msub><mi>v</mi><mn>2</mn></msub></math> from <math><mi>Au</mi><mo>+</mo><mi>Au</mi></math> collisions at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>27</mn></mrow></math> to 200 GeV. In this comprehensive study, we present the STAR measurements of elliptic flow and triangular flow of charged pions, along with the <math><msub><mi>v</mi><mn>2</mn></msub></math> of charged kaons and protons, as a function of charge asymmetry in <math><mi>Au</mi><mo>+</mo><mi>Au</mi></math> collisions at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>27</mn></mrow></math>, 39, 62.4, and 200 GeV. The slope parameters extracted from the linear dependence of the <math><msub><mi>v</mi><mn>2</mn></msub></math> difference on charge asymmetry for different particle species are reported and compared in different centrality intervals. In addition, the slopes of <math><msub><mi>v</mi><mn>2</mn></msub></math> for charged pions in small systems, i.e., <math><mrow><mi>p</mi><mo>+</mo></mrow><mi>Au</mi></math> and <math><mrow><mi>d</mi><mo>+</mo></mrow><mi>Au</mi></math> at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>200</mn></mrow></math> GeV, are also presented and compared with those in large systems, i.e., <math><mi>Au</mi><mo>+</mo><mi>Au</mi></math> at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>200</mn></mrow></math> GeV and <math><mtext>U</mtext><mo>+</mo><mtext>U</mtext></math> at 193 GeV. Our results provide new insights for the possible existence of the CMW and further constrain the background contributions in heavy-ion collisions at RHIC energies. |
id | cern-2865446 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28654462023-10-03T15:52:27Zdoi:10.1103/PhysRevC.108.014908doi:10.1103/PhysRevC.108.014908http://cds.cern.ch/record/2865446engAbdulhamid, M.I.Aboona, B.E.Adam, J.Adams, J.R.Agakishiev, G.Aggarwal, I.Aggarwal, M.M.Ahammed, Z.Aitbaev, A.Alekseev, I.Anderson, D.M.Aparin, A.Aslam, S.Atchison, J.Averichev, G.S.Bairathi, V.Baker, W.Ball Cap, J.G.Barish, K.Bhagat, P.Bhasin, A.Bhatta, S.Bordyuzhin, I.G.Brandenburg, J.D.Brandin, A.V.Cai, X.Z.Caines, H.Calderón de la Barca Sánchez, M.Cebra, D.Ceska, J.Chakaberia, I.Chan, B.K.Chang, Z.Chatterjee, A.Chen, D.Chen, J.Chen, J.H.Chen, Z.Cheng, J.Cheng, Y.Choudhury, S.Christie, W.Chu, X.Crawford, H.J.Dale-Gau, G.Das, A.Daugherity, M.Dedovich, T.G.Deppner, I.M.Derevschikov, A.A.Dhamija, A.Di Carlo, L.Didenko, L.Dixit, P.Dong, X.Drachenberg, J.L.Duckworth, E.Dunlop, J.C.Engelage, J.Eppley, G.Esumi, S.Evdokimov, O.Ewigleben, A.Eyser, O.Fatemi, R.Fazio, S.Feng, C.J.Feng, Y.Finch, E.Fisyak, Y.Flor, F.A.Fu, C.Geurts, F.Ghimire, N.Gibson, A.Gopal, K.Gou, X.Grosnick, D.Gupta, A.Hamed, A.Han, Y.Harasty, M.D.Harris, J.W.Harrison-Smith, H.He, W.He, X.H.He, Y.Hu, C.Hu, Q.Hu, Y.Huang, H.Huang, H.Z.Huang, S.L.Huang, T.Huang, X.Huang, Y.Huang, Y.Humanic, T.J.Isenhower, D.Isshiki, M.Jacobs, W.W.Jalotra, A.Jena, C.Ji, Y.Jia, J.Jin, C.Ju, X.Judd, E.G.Kabana, S.Kabir, M.L.Kalinkin, D.Kang, K.Kapukchyan, D.Keane, D.Kechechyan, A.Kelsey, M.Kimelman, B.Kiselev, A.Knospe, A.G.Ko, H.S.Kochenda, L.Korobitsin, A.A.Kravtsov, P.Kumar, L.Kumar, S.Kunnawalkam Elayavalli, R.Lacey, R.Landgraf, J.M.Lebedev, A.Lednicky, R.Lee, J.H.Leung, Y.H.Lewis, N.Li, C.Li, W.Li, X.Li, Y.Li, Y.Li, Z.Liang, X.Liang, Y.Lin, T.Liu, C.Liu, F.Liu, G.Liu, H.Liu, H.Liu, L.Liu, T.Liu, X.Liu, Y.Liu, Z.Ljubicic, T.Llope, W.J.Lomicky, O.Longacre, R.S.Loyd, E.M.Lu, T.Lukow, N.S.Luo, X.F.Luong, V.B.Ma, L.Ma, R.Ma, Y.G.Magdy, N.Mallick, D.Margetis, S.Matis, H.S.Mazer, J.A.McNamara, G.Mi, K.Minaev, N.G.Mohanty, B.Mondal, M.M.Mooney, I.Morozov, D.A.Mudrokh, A.Nagy, M.I.Nain, A.S.Nam, J.D.Nasim, M.Neff, D.Nelson, J.M.Nemes, D.B.Nie, M.Nigmatkulov, G.Niida, T.Nishitani, R.Nogach, L.V.Nonaka, T.Odyniec, G.Ogawa, A.Oh, S.Okorokov, V.A.Okubo, K.Page, B.S.Pak, R.Pan, J.Pandav, A.Pandey, A.K.Panebratsev, Y.Pani, T.Parfenov, P.Paul, A.Perkins, C.Pokhrel, B.R.Posik, M.Protzman, T.Pruthi, N.K.Putschke, J.Qin, Z.Qiu, H.Quintero, A.Racz, C.Radhakrishnan, S.K.Raha, N.Ray, R.L.Ritter, H.G.Robertson, C.W.Rogachevsky, O.V.Rosales Aguilar, M.A.Roy, D.Ruan, L.Sahoo, A.K.Sahoo, N.R.Sako, H.Salur, S.Samigullin, E.Sato, S.Schmidke, W.B.Schmitz, N.Seger, J.Seto, R.Seyboth, P.Shah, N.Shahaliev, E.Shanmuganathan, P.V.Shao, T.Sharma, M.Sharma, N.Sharma, R.Sharma, S.R.Sheikh, A.I.Shen, D.Y.Shen, K.Shi, S.S.Shi, Y.Shou, Q.Y.Si, F.Singh, J.Singha, S.Sinha, P.Skoby, M.J.Söhngen, Y.Song, Y.Srivastava, B.Stanislaus, T.D.S.Stewart, D.J.Strikhanov, M.Stringfellow, B.Su, Y.Sun, C.Sun, X.Sun, Y.Sun, Y.Surrow, B.Svirida, D.N.Sweger, Z.W.Tamis, A.Tang, A.H.Tang, Z.Taranenko, A.Tarnowsky, T.Thomas, J.H.Tlusty, D.Todoroki, T.Tokarev, M.V.Tomkiel, C.A.Trentalange, S.Tribble, R.E.Tribedy, P.Tsai, O.D.Tsang, C.Y.Tu, Z.Tyler, J.Ullrich, T.Underwood, D.G.Upsal, I.Van Buren, G.Vasiliev, A.N.Verkest, V.Videbæk, F.Vokal, S.Voloshin, S.A.Wang, F.Wang, G.Wang, J.S.Wang, X.Wang, Y.Wang, Y.Wang, Y.Wang, Z.Webb, J.C.Weidenkaff, P.C.Westfall, G.D.Wieman, H.Wilks, G.Wissink, S.W.Wu, J.Wu, J.Wu, X.Wu, Y.Xi, B.Xiao, Z.G.Xie, G.Xie, W.Xu, H.Xu, N.Xu, Q.H.Xu, Y.Xu, Y.Xu, Z.Xu, Z.Yan, G.Yan, Z.Yang, C.Yang, Q.Yang, S.Yang, Y.Ye, Z.Ye, Z.Yi, L.Yip, K.Yu, Y.Zha, W.Zhang, C.Zhang, D.Zhang, J.Zhang, S.Zhang, W.Zhang, X.Zhang, Y.Zhang, Y.Zhang, Y.Zhang, Z.J.Zhang, Z.Zhang, Z.Zhao, F.Zhao, J.Zhao, M.Zhou, C.Zhou, J.Zhou, S.Zhou, Y.Zhu, X.Zurek, M.Zyzak, M.Search for the chiral magnetic wave using anisotropic flow of identified particles at energies available at the BNL Relativistic Heavy Ion Collidernucl-exNuclear Physics - ExperimentThe chiral magnetic wave (CMW) has been theorized to propagate in the deconfined nuclear medium formed in high-energy heavy-ion collisions and to cause a difference in elliptic flow (<math><msub><mi>v</mi><mn>2</mn></msub></math>) between negatively and positively charged hadrons. Experimental data consistent with the CMW have been reported by the STAR Collaboration at the Relativistic Heavy Ion Collider (RHIC), based on the charge asymmetry dependence of the pion <math><msub><mi>v</mi><mn>2</mn></msub></math> from <math><mi>Au</mi><mo>+</mo><mi>Au</mi></math> collisions at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>27</mn></mrow></math> to 200 GeV. In this comprehensive study, we present the STAR measurements of elliptic flow and triangular flow of charged pions, along with the <math><msub><mi>v</mi><mn>2</mn></msub></math> of charged kaons and protons, as a function of charge asymmetry in <math><mi>Au</mi><mo>+</mo><mi>Au</mi></math> collisions at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>27</mn></mrow></math>, 39, 62.4, and 200 GeV. The slope parameters extracted from the linear dependence of the <math><msub><mi>v</mi><mn>2</mn></msub></math> difference on charge asymmetry for different particle species are reported and compared in different centrality intervals. In addition, the slopes of <math><msub><mi>v</mi><mn>2</mn></msub></math> for charged pions in small systems, i.e., <math><mrow><mi>p</mi><mo>+</mo></mrow><mi>Au</mi></math> and <math><mrow><mi>d</mi><mo>+</mo></mrow><mi>Au</mi></math> at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>200</mn></mrow></math> GeV, are also presented and compared with those in large systems, i.e., <math><mi>Au</mi><mo>+</mo><mi>Au</mi></math> at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>200</mn></mrow></math> GeV and <math><mtext>U</mtext><mo>+</mo><mtext>U</mtext></math> at 193 GeV. Our results provide new insights for the possible existence of the CMW and further constrain the background contributions in heavy-ion collisions at RHIC energies.The chiral magnetic wave (CMW) has been theorized to propagate in the deconfined nuclear medium formed in high-energy heavy-ion collisions, and to cause a difference in elliptic flow ($v_{2}$) between negatively and positively charged hadrons. Experimental data consistent with the CMW have been reported by the STAR Collaboration at the Relativistic Heavy Ion Collider (RHIC), based on the charge asymmetry dependence of the pion $v_{2}$ from Au+Au collisions at $\sqrt{s_{\rm NN}}$ = 27 to 200 GeV. In this comprehensive study, we present the STAR measurements of elliptic flow and triangular flow of charged pions, along with the $v_{2}$ of charged kaons and protons, as a function of charge asymmetry in Au+Au collisions at $\sqrt{s_{\rm NN}}$ = 27, 39, 62.4 and 200 GeV. The slope parameters extracted from the linear dependence of the $v_2$ difference on charge asymmetry for different particle species are reported and compared in different centrality intervals. In addition, the slopes of $v_{2}$ for charged pions in small systems, \textit{i.e.}, $p$+Au and $d$+Au at $\sqrt{s_{\rm NN}}$ = 200 GeV, are also presented and compared with those in large systems, \textit{i.e.}, Au+Au at $\sqrt{s_{\rm NN}}$ = 200 GeV and U+U at 193 GeV. Our results provide new insights for the possible existence of the CMW, and further constrain the background contributions in heavy-ion collisions at RHIC energies.arXiv:2210.14027oai:cds.cern.ch:28654462022-10-25 |
spellingShingle | nucl-ex Nuclear Physics - Experiment Abdulhamid, M.I. Aboona, B.E. Adam, J. Adams, J.R. Agakishiev, G. Aggarwal, I. Aggarwal, M.M. Ahammed, Z. Aitbaev, A. Alekseev, I. Anderson, D.M. Aparin, A. Aslam, S. Atchison, J. Averichev, G.S. Bairathi, V. Baker, W. Ball Cap, J.G. Barish, K. Bhagat, P. Bhasin, A. Bhatta, S. Bordyuzhin, I.G. Brandenburg, J.D. Brandin, A.V. Cai, X.Z. Caines, H. Calderón de la Barca Sánchez, M. Cebra, D. Ceska, J. Chakaberia, I. Chan, B.K. Chang, Z. Chatterjee, A. Chen, D. Chen, J. Chen, J.H. Chen, Z. Cheng, J. Cheng, Y. Choudhury, S. Christie, W. Chu, X. Crawford, H.J. Dale-Gau, G. Das, A. Daugherity, M. Dedovich, T.G. Deppner, I.M. Derevschikov, A.A. Dhamija, A. Di Carlo, L. Didenko, L. Dixit, P. Dong, X. Drachenberg, J.L. Duckworth, E. Dunlop, J.C. Engelage, J. Eppley, G. Esumi, S. Evdokimov, O. Ewigleben, A. Eyser, O. Fatemi, R. Fazio, S. Feng, C.J. Feng, Y. Finch, E. Fisyak, Y. Flor, F.A. Fu, C. Geurts, F. Ghimire, N. Gibson, A. Gopal, K. Gou, X. Grosnick, D. Gupta, A. Hamed, A. Han, Y. Harasty, M.D. Harris, J.W. Harrison-Smith, H. He, W. He, X.H. He, Y. Hu, C. Hu, Q. Hu, Y. Huang, H. Huang, H.Z. Huang, S.L. Huang, T. Huang, X. Huang, Y. Huang, Y. Humanic, T.J. Isenhower, D. Isshiki, M. Jacobs, W.W. Jalotra, A. Jena, C. Ji, Y. Jia, J. Jin, C. Ju, X. Judd, E.G. Kabana, S. Kabir, M.L. Kalinkin, D. Kang, K. Kapukchyan, D. Keane, D. Kechechyan, A. Kelsey, M. Kimelman, B. Kiselev, A. Knospe, A.G. Ko, H.S. Kochenda, L. Korobitsin, A.A. Kravtsov, P. Kumar, L. Kumar, S. Kunnawalkam Elayavalli, R. Lacey, R. Landgraf, J.M. Lebedev, A. Lednicky, R. Lee, J.H. Leung, Y.H. Lewis, N. Li, C. Li, W. Li, X. Li, Y. Li, Y. Li, Z. Liang, X. Liang, Y. Lin, T. Liu, C. Liu, F. Liu, G. Liu, H. Liu, H. Liu, L. Liu, T. Liu, X. Liu, Y. Liu, Z. Ljubicic, T. Llope, W.J. Lomicky, O. Longacre, R.S. Loyd, E.M. Lu, T. Lukow, N.S. Luo, X.F. Luong, V.B. Ma, L. Ma, R. Ma, Y.G. Magdy, N. Mallick, D. Margetis, S. Matis, H.S. Mazer, J.A. McNamara, G. Mi, K. Minaev, N.G. Mohanty, B. Mondal, M.M. Mooney, I. Morozov, D.A. Mudrokh, A. Nagy, M.I. Nain, A.S. Nam, J.D. Nasim, M. Neff, D. Nelson, J.M. Nemes, D.B. Nie, M. Nigmatkulov, G. Niida, T. Nishitani, R. Nogach, L.V. Nonaka, T. Odyniec, G. Ogawa, A. Oh, S. Okorokov, V.A. Okubo, K. Page, B.S. Pak, R. Pan, J. Pandav, A. Pandey, A.K. Panebratsev, Y. Pani, T. Parfenov, P. Paul, A. Perkins, C. Pokhrel, B.R. Posik, M. Protzman, T. Pruthi, N.K. Putschke, J. Qin, Z. Qiu, H. Quintero, A. Racz, C. Radhakrishnan, S.K. Raha, N. Ray, R.L. Ritter, H.G. Robertson, C.W. Rogachevsky, O.V. Rosales Aguilar, M.A. Roy, D. Ruan, L. Sahoo, A.K. Sahoo, N.R. Sako, H. Salur, S. Samigullin, E. Sato, S. Schmidke, W.B. Schmitz, N. Seger, J. Seto, R. Seyboth, P. Shah, N. Shahaliev, E. Shanmuganathan, P.V. Shao, T. Sharma, M. Sharma, N. Sharma, R. Sharma, S.R. Sheikh, A.I. Shen, D.Y. Shen, K. Shi, S.S. Shi, Y. Shou, Q.Y. Si, F. Singh, J. Singha, S. Sinha, P. Skoby, M.J. Söhngen, Y. Song, Y. Srivastava, B. Stanislaus, T.D.S. Stewart, D.J. Strikhanov, M. Stringfellow, B. Su, Y. Sun, C. Sun, X. Sun, Y. Sun, Y. Surrow, B. Svirida, D.N. Sweger, Z.W. Tamis, A. Tang, A.H. Tang, Z. Taranenko, A. Tarnowsky, T. Thomas, J.H. Tlusty, D. Todoroki, T. Tokarev, M.V. Tomkiel, C.A. Trentalange, S. Tribble, R.E. Tribedy, P. Tsai, O.D. Tsang, C.Y. Tu, Z. Tyler, J. Ullrich, T. Underwood, D.G. Upsal, I. Van Buren, G. Vasiliev, A.N. Verkest, V. Videbæk, F. Vokal, S. Voloshin, S.A. Wang, F. Wang, G. Wang, J.S. Wang, X. Wang, Y. Wang, Y. Wang, Y. Wang, Z. Webb, J.C. Weidenkaff, P.C. Westfall, G.D. Wieman, H. Wilks, G. Wissink, S.W. Wu, J. Wu, J. Wu, X. Wu, Y. Xi, B. Xiao, Z.G. Xie, G. Xie, W. Xu, H. Xu, N. Xu, Q.H. Xu, Y. Xu, Y. Xu, Z. Xu, Z. Yan, G. Yan, Z. Yang, C. Yang, Q. Yang, S. Yang, Y. Ye, Z. Ye, Z. Yi, L. Yip, K. Yu, Y. Zha, W. Zhang, C. Zhang, D. Zhang, J. Zhang, S. Zhang, W. Zhang, X. Zhang, Y. Zhang, Y. Zhang, Y. Zhang, Z.J. Zhang, Z. Zhang, Z. Zhao, F. Zhao, J. Zhao, M. Zhou, C. Zhou, J. Zhou, S. Zhou, Y. Zhu, X. Zurek, M. Zyzak, M. Search for the chiral magnetic wave using anisotropic flow of identified particles at energies available at the BNL Relativistic Heavy Ion Collider |
title | Search for the chiral magnetic wave using anisotropic flow of identified particles at energies available at the BNL Relativistic Heavy Ion Collider |
title_full | Search for the chiral magnetic wave using anisotropic flow of identified particles at energies available at the BNL Relativistic Heavy Ion Collider |
title_fullStr | Search for the chiral magnetic wave using anisotropic flow of identified particles at energies available at the BNL Relativistic Heavy Ion Collider |
title_full_unstemmed | Search for the chiral magnetic wave using anisotropic flow of identified particles at energies available at the BNL Relativistic Heavy Ion Collider |
title_short | Search for the chiral magnetic wave using anisotropic flow of identified particles at energies available at the BNL Relativistic Heavy Ion Collider |
title_sort | search for the chiral magnetic wave using anisotropic flow of identified particles at energies available at the bnl relativistic heavy ion collider |
topic | nucl-ex Nuclear Physics - Experiment |
url | https://dx.doi.org/10.1103/PhysRevC.108.014908 https://dx.doi.org/10.1103/PhysRevC.108.014908 http://cds.cern.ch/record/2865446 |
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searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT fuc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT geurtsf searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT ghimiren searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT gibsona searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT gopalk searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT goux searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT grosnickd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT guptaa searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT hameda searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT hany searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT harastymd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT harrisjw searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT harrisonsmithh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT hew searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT hexh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT hey searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huq searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huangh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huanghz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huangsl searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huangt searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huangx searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT huangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT humanictj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT isenhowerd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT isshikim searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT jacobsww searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT jalotraa searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT jenac searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT jiy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT jiaj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT jinc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT jux searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT juddeg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kabanas searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kabirml searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kalinkind searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kangk searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kapukchyand searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT keaned searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kechechyana searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kelseym searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kimelmanb searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kiseleva searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT knospeag searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kohs searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kochendal searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT korobitsinaa searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kravtsovp searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kumarl searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kumars searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT kunnawalkamelayavallir searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT laceyr searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT landgrafjm searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT lebedeva searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT lednickyr searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT leejh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT leungyh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT lewisn searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT lic searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liw searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT lix searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liangx searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT lint searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liuc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liuf searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liug searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liuh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liuh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liul searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liut searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liux searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liuy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT liuz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT ljubicict searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT llopewj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT lomickyo searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT longacrers searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT loydem searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT lut searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT lukowns searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT luoxf searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT luongvb searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mal searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mar searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mayg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT magdyn searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mallickd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT margetiss searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT matishs searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mazerja searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mcnamarag searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mik searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT minaevng searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mohantyb searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mondalmm searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mooneyi searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT morozovda searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT mudrokha searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT nagymi searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT nainas searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT namjd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT nasimm searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT neffd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT nelsonjm searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT nemesdb searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT niem searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT nigmatkulovg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT niidat searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT nishitanir searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT nogachlv searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT nonakat searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT odyniecg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT ogawaa searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT ohs searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT okorokovva searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT okubok searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT pagebs searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT pakr searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT panj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT pandava searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT pandeyak searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT panebratsevy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT panit searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT parfenovp searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT paula searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT perkinsc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT pokhrelbr searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT posikm searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT protzmant searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT pruthink searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT putschkej searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT qinz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT qiuh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT quinteroa searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT raczc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT radhakrishnansk searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT rahan searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT rayrl searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT ritterhg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT robertsoncw searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT rogachevskyov searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT rosalesaguilarma searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT royd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT ruanl searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sahooak searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sahoonr searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sakoh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT salurs searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT samigulline searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT satos searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT schmidkewb searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT schmitzn searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT segerj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT setor searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT seybothp searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT shahn searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT shahalieve searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT shanmuganathanpv searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT shaot searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sharmam searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sharman searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sharmar searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sharmasr searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sheikhai searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT shendy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT shenk searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT shiss searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT shiy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT shouqy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sif searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT singhj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT singhas searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sinhap searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT skobymj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sohngeny searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT songy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT srivastavab searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT stanislaustds searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT stewartdj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT strikhanovm searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT stringfellowb searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT suy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sunc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sunx searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT suny searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT suny searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT surrowb searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT sviridadn searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT swegerzw searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tamisa searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tangah searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tangz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT taranenkoa searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tarnowskyt searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT thomasjh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tlustyd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT todorokit searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tokarevmv searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tomkielca searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT trentalanges searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tribblere searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tribedyp searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tsaiod searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tsangcy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tuz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT tylerj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT ullricht searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT underwooddg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT upsali searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT vanbureng searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT vasilievan searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT verkestv searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT videbækf searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT vokals searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT voloshinsa searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wangf searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wangg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wangjs searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wangx searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wangz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT webbjc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT weidenkaffpc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT westfallgd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wiemanh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wilksg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wissinksw searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wuj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wuj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wux searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT wuy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xib searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xiaozg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xieg searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xiew searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xuh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xun searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xuqh searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xuy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xuy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xuz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT xuz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yang searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yanz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yangc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yangq searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yangs searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yez searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yez searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yil searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yipk searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT yuy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhaw searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangd searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangs searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangw searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangx searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangzj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhangz searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhaof searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhaoj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhaom searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhouc searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhouj searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhous searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhouy searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zhux searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zurekm searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider AT zyzakm searchforthechiralmagneticwaveusinganisotropicflowofidentifiedparticlesatenergiesavailableatthebnlrelativisticheavyioncollider |