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New analysis of $\eta\pi$ tensor resonances measured at the COMPASS experiment

We present a new amplitude analysis of the ηπ D -wave in the reaction π−p→ηπ−p measured by COMPASS. Employing an analytical model based on the principles of the relativistic S -matrix, we find two resonances that can be identified with the a2(1320) and the excited a2′(1700) , and perform a comprehen...

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Detalles Bibliográficos
Autores principales: Jackura, A., Fernández-Ramírez, C., Mikhasenko, M., Pilloni, A., Mathieu, V., Nys, J., Pauk, V., Szczepaniak, A.P., Fox, G., Aghasyan, M., Akhunzyanov, R., Alexeev, M.G., Alexeev, G.D., Amoroso, A., Andrieux, V., Anfimov, N.V., Anosov, V., Antoshkin, A., Augsten, K., Augustyniak, W., Austregesilo, A., Azevedo, C.D.R., Badełek, B., Balestra, F., Ball, M., Barth, J., Beck, R., Bedfer, Y., Bernhard, J., Bicker, K., Bielert, E.R., Birsa, R., Bodlak, M., Bordalo, P., Bradamante, F., Bressan, A., Büchele, M., Burtsev, V.E., Chang, W.-C., Chatterjee, C., Chiosso, M., Choi, I., Chumakov, A.G., Chung, S.-U., Cicuttin, A., Crespo, M.L., Dalla Torre, S., Dasgupta, S.S., Dasgupta, S., Denisov, O.Yu., Dhara, L., Donskov, S.V., Doshita, N., Dreisbach, Ch., Dünnweber, W., Dusaev, R.R., Dziewiecki, M., Efremov, A., Eversheim, P.D., Faessler, M., Ferrero, A., Finger, M., Finger, M., Jr., Fischer, H., Franco, C., du Fresne von Hohenesche, N., Friedrich, J.M., Frolov, V., Fuchey, E., Gautheron, F., Gavrichtchouk, O.P., Gerassimov, S., Giarra, J., Giordano, F., Gnesi, I., Gorzellik, M., Grasso, A., Grosse Perdekamp, M., Grube, B., Grussenmeyer, T., Guskov, A., Hahne, D., Hamar, G., von Harrach, D., Heinsius, F.H., Heitz, R., Herrmann, F., Horikawa, N., d'Hose, N., Hsieh, C.-Y., Huber, S., Ishimoto, S., Ivanov, A., Ivanshin, Yu., Iwata, T., Jary, V., Joosten, R., Jörg, P., Kabuß, E., Kerbizi, A., Ketzer, B., Khaustov, G.V., Khokhlov, Yu.A., Kisselev, Yu., Klein, F., Koivuniemi, J.H., Kolosov, V.N., Kondo, K., Königsmann, K., Konorov, I., Konstantinov, V.F., Kotzinian, A.M., Kouznetsov, O.M., Kral, Z., Krämer, M., Kremser, P., Krinner, F., Kroumchtein, Z.V., Kulinich, Y., Kunne, F., Kurek, K., Kurjata, R.P., Kuznetsov, I.I., Kveton, A., Lednev, A.A., Levchenko, E.A., Levillain, M., Levorato, S., Lian, Y.-S., Lichtenstadt, J., Longo, R., Lyubovitskij, V.E., Maggiora, A., Magnon, A., Makins, N., Makke, N., Mallot, G.K., Mamon, S.A., Marianski, B., Martin, A., Marzec, J., Matsuda, H., Matsuda, T., Meshcheryakov, G.V., Meyer, M., Meyer, W., Mikhailov, Yu.V., Mitrofanov, E., Mitrofanov, N., Miyachi, Y., Nagaytsev, A., Nerling, F., Neyret, D., Nový, J., Nowak, W.-D., Nukazuka, G., Nunes, A.S., Olshevsky, A.G., Orlov, I., Ostrick, M., Panzieri, D., Parsamyan, B., Paul, S., Peng, J.-C., Pereira, F., Pešek, M., Pešková, M., Peshekhonov, D.V., Pierre, N., Platchkov, S., Pochodzalla, J., Polyakov, V.A., Pretz, J., Quaresma, M., Quintans, C., Ramos, S., Regali, C., Reicherz, G., Riedl, C., Rogacheva, N.S., Ryabchikov, D.I., Rybnikov, A., Rychter, A., Salac, R., Samoylenko, V.D., Sandacz, A., Santos, C., Sarkar, S., Savin, I.A., Sawada, T., Sbrizzai, G., Schiavon, P., Schlüter, T., Schmidt, K., Schmieden, H., Schönning, K., Seder, E., Selyunin, A., Silva, L., Sinha, L., Sirtl, S., Slunecka, M., Smolik, J., Srnka, A., Steffen, D., Stolarski, M., Subrt, O., Sulc, M., Suzuki, H., Szameitat, T., Sznajder, P., Tasevsky, M., Tessaro, S., Tessarotto, F., Thiel, A., Tomsa, J., Tosello, F., Tskhay, V., Uhl, S., Vasilishin, B.I., Vauth, A., Veloso, J., Vidon, A., Virius, M., Wallner, S., Weisrock, T., Wilfert, M., ter Wolbeek, J., Zaremba, K., Zavada, P., Zavertyaev, M., Zemlyanichkina, E., Zhuravlev, N., Ziembicki, M.
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2018.01.017
http://cds.cern.ch/record/2273608
_version_ 1780955021707313152
author Jackura, A.
Fernández-Ramírez, C.
Mikhasenko, M.
Pilloni, A.
Mathieu, V.
Nys, J.
Pauk, V.
Szczepaniak, A.P.
Fox, G.
Aghasyan, M.
Akhunzyanov, R.
Alexeev, M.G.
Alexeev, G.D.
Amoroso, A.
Andrieux, V.
Anfimov, N.V.
Anosov, V.
Antoshkin, A.
Augsten, K.
Augustyniak, W.
Austregesilo, A.
Azevedo, C.D.R.
Badełek, B.
Balestra, F.
Ball, M.
Barth, J.
Beck, R.
Bedfer, Y.
Bernhard, J.
Bicker, K.
Bielert, E.R.
Birsa, R.
Bodlak, M.
Bordalo, P.
Bradamante, F.
Bressan, A.
Büchele, M.
Burtsev, V.E.
Chang, W.-C.
Chatterjee, C.
Chiosso, M.
Choi, I.
Chumakov, A.G.
Chung, S.-U.
Cicuttin, A.
Crespo, M.L.
Dalla Torre, S.
Dasgupta, S.S.
Dasgupta, S.
Denisov, O.Yu.
Dhara, L.
Donskov, S.V.
Doshita, N.
Dreisbach, Ch.
Dünnweber, W.
Dusaev, R.R.
Dziewiecki, M.
Efremov, A.
Eversheim, P.D.
Faessler, M.
Ferrero, A.
Finger, M.
Finger, M., Jr.
Fischer, H.
Franco, C.
du Fresne von Hohenesche, N.
Friedrich, J.M.
Frolov, V.
Fuchey, E.
Gautheron, F.
Gavrichtchouk, O.P.
Gerassimov, S.
Giarra, J.
Giordano, F.
Gnesi, I.
Gorzellik, M.
Grasso, A.
Grosse Perdekamp, M.
Grube, B.
Grussenmeyer, T.
Guskov, A.
Hahne, D.
Hamar, G.
von Harrach, D.
Heinsius, F.H.
Heitz, R.
Herrmann, F.
Horikawa, N.
d'Hose, N.
Hsieh, C.-Y.
Huber, S.
Ishimoto, S.
Ivanov, A.
Ivanshin, Yu.
Iwata, T.
Jary, V.
Joosten, R.
Jörg, P.
Kabuß, E.
Kerbizi, A.
Ketzer, B.
Khaustov, G.V.
Khokhlov, Yu.A.
Kisselev, Yu.
Klein, F.
Koivuniemi, J.H.
Kolosov, V.N.
Kondo, K.
Königsmann, K.
Konorov, I.
Konstantinov, V.F.
Kotzinian, A.M.
Kouznetsov, O.M.
Kral, Z.
Krämer, M.
Kremser, P.
Krinner, F.
Kroumchtein, Z.V.
Kulinich, Y.
Kunne, F.
Kurek, K.
Kurjata, R.P.
Kuznetsov, I.I.
Kveton, A.
Lednev, A.A.
Levchenko, E.A.
Levillain, M.
Levorato, S.
Lian, Y.-S.
Lichtenstadt, J.
Longo, R.
Lyubovitskij, V.E.
Maggiora, A.
Magnon, A.
Makins, N.
Makke, N.
Mallot, G.K.
Mamon, S.A.
Marianski, B.
Martin, A.
Marzec, J.
Matsuda, H.
Matsuda, T.
Meshcheryakov, G.V.
Meyer, M.
Meyer, W.
Mikhailov, Yu.V.
Mikhasenko, M.
Mitrofanov, E.
Mitrofanov, N.
Miyachi, Y.
Nagaytsev, A.
Nerling, F.
Neyret, D.
Nový, J.
Nowak, W.-D.
Nukazuka, G.
Nunes, A.S.
Olshevsky, A.G.
Orlov, I.
Ostrick, M.
Panzieri, D.
Parsamyan, B.
Paul, S.
Peng, J.-C.
Pereira, F.
Pešek, M.
Pešková, M.
Peshekhonov, D.V.
Pierre, N.
Platchkov, S.
Pochodzalla, J.
Polyakov, V.A.
Pretz, J.
Quaresma, M.
Quintans, C.
Ramos, S.
Regali, C.
Reicherz, G.
Riedl, C.
Rogacheva, N.S.
Ryabchikov, D.I.
Rybnikov, A.
Rychter, A.
Salac, R.
Samoylenko, V.D.
Sandacz, A.
Santos, C.
Sarkar, S.
Savin, I.A.
Sawada, T.
Sbrizzai, G.
Schiavon, P.
Schlüter, T.
Schmidt, K.
Schmieden, H.
Schönning, K.
Seder, E.
Selyunin, A.
Silva, L.
Sinha, L.
Sirtl, S.
Slunecka, M.
Smolik, J.
Srnka, A.
Steffen, D.
Stolarski, M.
Subrt, O.
Sulc, M.
Suzuki, H.
Szameitat, T.
Sznajder, P.
Tasevsky, M.
Tessaro, S.
Tessarotto, F.
Thiel, A.
Tomsa, J.
Tosello, F.
Tskhay, V.
Uhl, S.
Vasilishin, B.I.
Vauth, A.
Veloso, J.
Vidon, A.
Virius, M.
Wallner, S.
Weisrock, T.
Wilfert, M.
ter Wolbeek, J.
Zaremba, K.
Zavada, P.
Zavertyaev, M.
Zemlyanichkina, E.
Zhuravlev, N.
Ziembicki, M.
author_facet Jackura, A.
Fernández-Ramírez, C.
Mikhasenko, M.
Pilloni, A.
Mathieu, V.
Nys, J.
Pauk, V.
Szczepaniak, A.P.
Fox, G.
Aghasyan, M.
Akhunzyanov, R.
Alexeev, M.G.
Alexeev, G.D.
Amoroso, A.
Andrieux, V.
Anfimov, N.V.
Anosov, V.
Antoshkin, A.
Augsten, K.
Augustyniak, W.
Austregesilo, A.
Azevedo, C.D.R.
Badełek, B.
Balestra, F.
Ball, M.
Barth, J.
Beck, R.
Bedfer, Y.
Bernhard, J.
Bicker, K.
Bielert, E.R.
Birsa, R.
Bodlak, M.
Bordalo, P.
Bradamante, F.
Bressan, A.
Büchele, M.
Burtsev, V.E.
Chang, W.-C.
Chatterjee, C.
Chiosso, M.
Choi, I.
Chumakov, A.G.
Chung, S.-U.
Cicuttin, A.
Crespo, M.L.
Dalla Torre, S.
Dasgupta, S.S.
Dasgupta, S.
Denisov, O.Yu.
Dhara, L.
Donskov, S.V.
Doshita, N.
Dreisbach, Ch.
Dünnweber, W.
Dusaev, R.R.
Dziewiecki, M.
Efremov, A.
Eversheim, P.D.
Faessler, M.
Ferrero, A.
Finger, M.
Finger, M., Jr.
Fischer, H.
Franco, C.
du Fresne von Hohenesche, N.
Friedrich, J.M.
Frolov, V.
Fuchey, E.
Gautheron, F.
Gavrichtchouk, O.P.
Gerassimov, S.
Giarra, J.
Giordano, F.
Gnesi, I.
Gorzellik, M.
Grasso, A.
Grosse Perdekamp, M.
Grube, B.
Grussenmeyer, T.
Guskov, A.
Hahne, D.
Hamar, G.
von Harrach, D.
Heinsius, F.H.
Heitz, R.
Herrmann, F.
Horikawa, N.
d'Hose, N.
Hsieh, C.-Y.
Huber, S.
Ishimoto, S.
Ivanov, A.
Ivanshin, Yu.
Iwata, T.
Jary, V.
Joosten, R.
Jörg, P.
Kabuß, E.
Kerbizi, A.
Ketzer, B.
Khaustov, G.V.
Khokhlov, Yu.A.
Kisselev, Yu.
Klein, F.
Koivuniemi, J.H.
Kolosov, V.N.
Kondo, K.
Königsmann, K.
Konorov, I.
Konstantinov, V.F.
Kotzinian, A.M.
Kouznetsov, O.M.
Kral, Z.
Krämer, M.
Kremser, P.
Krinner, F.
Kroumchtein, Z.V.
Kulinich, Y.
Kunne, F.
Kurek, K.
Kurjata, R.P.
Kuznetsov, I.I.
Kveton, A.
Lednev, A.A.
Levchenko, E.A.
Levillain, M.
Levorato, S.
Lian, Y.-S.
Lichtenstadt, J.
Longo, R.
Lyubovitskij, V.E.
Maggiora, A.
Magnon, A.
Makins, N.
Makke, N.
Mallot, G.K.
Mamon, S.A.
Marianski, B.
Martin, A.
Marzec, J.
Matsuda, H.
Matsuda, T.
Meshcheryakov, G.V.
Meyer, M.
Meyer, W.
Mikhailov, Yu.V.
Mikhasenko, M.
Mitrofanov, E.
Mitrofanov, N.
Miyachi, Y.
Nagaytsev, A.
Nerling, F.
Neyret, D.
Nový, J.
Nowak, W.-D.
Nukazuka, G.
Nunes, A.S.
Olshevsky, A.G.
Orlov, I.
Ostrick, M.
Panzieri, D.
Parsamyan, B.
Paul, S.
Peng, J.-C.
Pereira, F.
Pešek, M.
Pešková, M.
Peshekhonov, D.V.
Pierre, N.
Platchkov, S.
Pochodzalla, J.
Polyakov, V.A.
Pretz, J.
Quaresma, M.
Quintans, C.
Ramos, S.
Regali, C.
Reicherz, G.
Riedl, C.
Rogacheva, N.S.
Ryabchikov, D.I.
Rybnikov, A.
Rychter, A.
Salac, R.
Samoylenko, V.D.
Sandacz, A.
Santos, C.
Sarkar, S.
Savin, I.A.
Sawada, T.
Sbrizzai, G.
Schiavon, P.
Schlüter, T.
Schmidt, K.
Schmieden, H.
Schönning, K.
Seder, E.
Selyunin, A.
Silva, L.
Sinha, L.
Sirtl, S.
Slunecka, M.
Smolik, J.
Srnka, A.
Steffen, D.
Stolarski, M.
Subrt, O.
Sulc, M.
Suzuki, H.
Szameitat, T.
Sznajder, P.
Tasevsky, M.
Tessaro, S.
Tessarotto, F.
Thiel, A.
Tomsa, J.
Tosello, F.
Tskhay, V.
Uhl, S.
Vasilishin, B.I.
Vauth, A.
Veloso, J.
Vidon, A.
Virius, M.
Wallner, S.
Weisrock, T.
Wilfert, M.
ter Wolbeek, J.
Zaremba, K.
Zavada, P.
Zavertyaev, M.
Zemlyanichkina, E.
Zhuravlev, N.
Ziembicki, M.
author_sort Jackura, A.
collection CERN
description We present a new amplitude analysis of the ηπ D -wave in the reaction π−p→ηπ−p measured by COMPASS. Employing an analytical model based on the principles of the relativistic S -matrix, we find two resonances that can be identified with the a2(1320) and the excited a2′(1700) , and perform a comprehensive analysis of their pole positions. For the mass and width of the a2 we find M=(1307±1±6) MeV and Γ=(112±1±8) MeV, and for the excited state a2′ we obtain M=(1720±10±60) MeV and Γ=(280±10±70) MeV, respectively.
id cern-2273608
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling cern-22736082023-10-06T03:00:09Zdoi:10.1016/j.physletb.2018.01.017http://cds.cern.ch/record/2273608engJackura, A.Fernández-Ramírez, C.Mikhasenko, M.Pilloni, A.Mathieu, V.Nys, J.Pauk, V.Szczepaniak, A.P.Fox, G.Aghasyan, M.Akhunzyanov, R.Alexeev, M.G.Alexeev, G.D.Amoroso, A.Andrieux, V.Anfimov, N.V.Anosov, V.Antoshkin, A.Augsten, K.Augustyniak, W.Austregesilo, A.Azevedo, C.D.R.Badełek, B.Balestra, F.Ball, M.Barth, J.Beck, R.Bedfer, Y.Bernhard, J.Bicker, K.Bielert, E.R.Birsa, R.Bodlak, M.Bordalo, P.Bradamante, F.Bressan, A.Büchele, M.Burtsev, V.E.Chang, W.-C.Chatterjee, C.Chiosso, M.Choi, I.Chumakov, A.G.Chung, S.-U.Cicuttin, A.Crespo, M.L.Dalla Torre, S.Dasgupta, S.S.Dasgupta, S.Denisov, O.Yu.Dhara, L.Donskov, S.V.Doshita, N.Dreisbach, Ch.Dünnweber, W.Dusaev, R.R.Dziewiecki, M.Efremov, A.Eversheim, P.D.Faessler, M.Ferrero, A.Finger, M.Finger, M., Jr.Fischer, H.Franco, C.du Fresne von Hohenesche, N.Friedrich, J.M.Frolov, V.Fuchey, E.Gautheron, F.Gavrichtchouk, O.P.Gerassimov, S.Giarra, J.Giordano, F.Gnesi, I.Gorzellik, M.Grasso, A.Grosse Perdekamp, M.Grube, B.Grussenmeyer, T.Guskov, A.Hahne, D.Hamar, G.von Harrach, D.Heinsius, F.H.Heitz, R.Herrmann, F.Horikawa, N.d'Hose, N.Hsieh, C.-Y.Huber, S.Ishimoto, S.Ivanov, A.Ivanshin, Yu.Iwata, T.Jary, V.Joosten, R.Jörg, P.Kabuß, E.Kerbizi, A.Ketzer, B.Khaustov, G.V.Khokhlov, Yu.A.Kisselev, Yu.Klein, F.Koivuniemi, J.H.Kolosov, V.N.Kondo, K.Königsmann, K.Konorov, I.Konstantinov, V.F.Kotzinian, A.M.Kouznetsov, O.M.Kral, Z.Krämer, M.Kremser, P.Krinner, F.Kroumchtein, Z.V.Kulinich, Y.Kunne, F.Kurek, K.Kurjata, R.P.Kuznetsov, I.I.Kveton, A.Lednev, A.A.Levchenko, E.A.Levillain, M.Levorato, S.Lian, Y.-S.Lichtenstadt, J.Longo, R.Lyubovitskij, V.E.Maggiora, A.Magnon, A.Makins, N.Makke, N.Mallot, G.K.Mamon, S.A.Marianski, B.Martin, A.Marzec, J.Matsuda, H.Matsuda, T.Meshcheryakov, G.V.Meyer, M.Meyer, W.Mikhailov, Yu.V.Mikhasenko, M.Mitrofanov, E.Mitrofanov, N.Miyachi, Y.Nagaytsev, A.Nerling, F.Neyret, D.Nový, J.Nowak, W.-D.Nukazuka, G.Nunes, A.S.Olshevsky, A.G.Orlov, I.Ostrick, M.Panzieri, D.Parsamyan, B.Paul, S.Peng, J.-C.Pereira, F.Pešek, M.Pešková, M.Peshekhonov, D.V.Pierre, N.Platchkov, S.Pochodzalla, J.Polyakov, V.A.Pretz, J.Quaresma, M.Quintans, C.Ramos, S.Regali, C.Reicherz, G.Riedl, C.Rogacheva, N.S.Ryabchikov, D.I.Rybnikov, A.Rychter, A.Salac, R.Samoylenko, V.D.Sandacz, A.Santos, C.Sarkar, S.Savin, I.A.Sawada, T.Sbrizzai, G.Schiavon, P.Schlüter, T.Schmidt, K.Schmieden, H.Schönning, K.Seder, E.Selyunin, A.Silva, L.Sinha, L.Sirtl, S.Slunecka, M.Smolik, J.Srnka, A.Steffen, D.Stolarski, M.Subrt, O.Sulc, M.Suzuki, H.Szameitat, T.Sznajder, P.Tasevsky, M.Tessaro, S.Tessarotto, F.Thiel, A.Tomsa, J.Tosello, F.Tskhay, V.Uhl, S.Vasilishin, B.I.Vauth, A.Veloso, J.Vidon, A.Virius, M.Wallner, S.Weisrock, T.Wilfert, M.ter Wolbeek, J.Zaremba, K.Zavada, P.Zavertyaev, M.Zemlyanichkina, E.Zhuravlev, N.Ziembicki, M.New analysis of $\eta\pi$ tensor resonances measured at the COMPASS experimenthep-exParticle Physics - Experimenthep-phParticle Physics - PhenomenologyWe present a new amplitude analysis of the ηπ D -wave in the reaction π−p→ηπ−p measured by COMPASS. Employing an analytical model based on the principles of the relativistic S -matrix, we find two resonances that can be identified with the a2(1320) and the excited a2′(1700) , and perform a comprehensive analysis of their pole positions. For the mass and width of the a2 we find M=(1307±1±6) MeV and Γ=(112±1±8) MeV, and for the excited state a2′ we obtain M=(1720±10±60) MeV and Γ=(280±10±70) MeV, respectively.We present a new amplitude analysis of the $\eta\pi$ $D$-wave in $\pi^- p\to \eta\pi^- p$ measured by COMPASS. Employing an analytical model based on the principles of the relativistic $S$-matrix, we find two resonances that can be identified with the $a_2(1320)$ and the excited $a_2^\prime(1700)$, and perform a comprehensive analysis of their pole positions. For the mass and width of the $a_2$ we find $M=(1307 \pm 1 \pm 6)$~MeV and $\Gamma=(112 \pm 1 \pm 8)$~MeV, and for the excited state $a_2^\prime$ we obtain $M=(1720 \pm 10 \pm 60)$~MeV and $\Gamma=(280\pm 10 \pm 70)$~MeV, respectively.arXiv:1707.02848CERN-EP-2017-169JLAB-THY-17-2468oai:cds.cern.ch:22736082017-07-09
spellingShingle hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
Jackura, A.
Fernández-Ramírez, C.
Mikhasenko, M.
Pilloni, A.
Mathieu, V.
Nys, J.
Pauk, V.
Szczepaniak, A.P.
Fox, G.
Aghasyan, M.
Akhunzyanov, R.
Alexeev, M.G.
Alexeev, G.D.
Amoroso, A.
Andrieux, V.
Anfimov, N.V.
Anosov, V.
Antoshkin, A.
Augsten, K.
Augustyniak, W.
Austregesilo, A.
Azevedo, C.D.R.
Badełek, B.
Balestra, F.
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Weisrock, T.
Wilfert, M.
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Zavertyaev, M.
Zemlyanichkina, E.
Zhuravlev, N.
Ziembicki, M.
New analysis of $\eta\pi$ tensor resonances measured at the COMPASS experiment
title New analysis of $\eta\pi$ tensor resonances measured at the COMPASS experiment
title_full New analysis of $\eta\pi$ tensor resonances measured at the COMPASS experiment
title_fullStr New analysis of $\eta\pi$ tensor resonances measured at the COMPASS experiment
title_full_unstemmed New analysis of $\eta\pi$ tensor resonances measured at the COMPASS experiment
title_short New analysis of $\eta\pi$ tensor resonances measured at the COMPASS experiment
title_sort new analysis of $\eta\pi$ tensor resonances measured at the compass experiment
topic hep-ex
Particle Physics - Experiment
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.physletb.2018.01.017
http://cds.cern.ch/record/2273608
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