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The Spin Structure Function $g_1^{\rm p}$ of the Proton and a Test of the Bjorken Sum Rule
New results for the double spin asymmetry $A_1^{\rm p}$ and the proton longitudinal spin structure function $g_1^{\rm p}$ are presented. They were obtained by the COMPASS collaboration using polarised 200 GeV muons scattered off a longitudinally polarised NH$_3$ target. The data were collected in 20...
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Lenguaje: | eng |
Publicado: |
2015
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/j.physletb.2015.11.064 http://cds.cern.ch/record/2004412 |
_version_ | 1780946117141200896 |
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author | Adolph, C. Akhunzyanov, R. Alexeev, M.G. Alexeev, G.D. Amoroso, A. Andrieux, V. Anosov, V. Austregesilo, A. Azevedo, C. Badelek, B. Balestra, F. Barth, J. Baum, G. Beck, R. Bedfer, Y. Bernhard, J. Bicker, K. Bielert, E.R. Birsa, R. Bisplinghoff, J. Bodlak, M. Boer, M. Bordalo, P. Bradamante, F. Braun, C. Bressan, A. Buchele, M. Burtin, E. Capozza, L. Chang, W.C. Chiosso, M. Choi, I. Chung, S.U. Cicuttin, A. Crespo, M.L. Curiel, Q. Dalla Torre, S. Dasgupta, S.S. Dasgupta, S. Denisov, O.Yu. Dhara, L. Donskov, S.V. Doshita, N. Duic, V. Dziewiecki, M. Efremov, A. Eversheim, P.D. Eyrich, W. Ferrero, A. Finger, M. Finger, M., Jr. Fischer, H. Franco, C. von Hohenesche, N. du Fresne Friedrich, J.M. Frolov, V. Fuchey, E. Gautheron, F. Gavrichtchouk, O.P. Gerassimov, S. Giordano, F. Gnesi, I. Gorzellik, M. Grabmuller, S. Grasso, A. Grosse-Perdekamp, M. Grube, B. Grussenmeyer, T. Guskov, A. Haas, F. Hahne, D. von Harrach, D. Hashimoto, R. Heinsius, F.H. Herrmann, F. Hinterberger, F. Horikawa, N. d'Hose, N. Hsieh, C.Yu Huber, S. Ishimoto, S. Ivanov, A. Ivanshin, Yu. Iwata, T. Jahn, R. Jary, V. Jorg, P. Joosten, R. Kabuss, E. Ketzer, B. Khaustov, G.V. Khokhlov, Yu. A. Kisselev, Yu. Klein, F. Klimaszewski, K. Koivuniemi, J.H. Kolosov, V.N. Kondo, K. Konigsmann, K. Konorov, I. Konstantinov, V.F. Kotzinian, A.M. Kouznetsov, O. Kramer, M. Kremser, P. Krinner, F. Kroumchtein, Z.V. Kuchinski, N. Kunne, F. Kurek, K. Kurjata, R.P. Lednev, A.A. Lehmann, A. Levillain, M. Levorato, S. Lichtenstadt, J. Longo, R. Maggiora, A. Magnon, A. Makins, N. Makke, N. Mallot, G.K. Marchand, C. Martin, A. Marzec, J. Matousek, J. Matsuda, H. Matsuda, T. Meshcheryakov, G. Meyer, W. Michigami, T. Mikhailov, Yu. V. Miyachi, Y. Nagaytsev, A. Nagel, T. Nerling, F. Neyret, D. Nikolaenko, V.I. Novy, J. Nowak, W.D. Nunes, A.S. Olshevsky, A.G. Orlov, I. Ostrick, M. Panzieri, D. Parsamyan, B. Paul, S. Peng, J.C. Pereira, F. Pesek, M. Peshekhonov, D.V. Platchkov, S. Pochodzalla, J. Polyakov, V.A. Pretz, J. Quaresma, M. Quintans, C. Ramos, S. Regali, C. Reicherz, G. Riedl, C. Rocco, E. Rossiyskaya, N.S. Ryabchikov, D.I. Rychter, A. Samoylenko, V.D. Sandacz, A. Santos, C. Sarkar, S. Savin, I.A. Sbrizzai, G. Schiavon, P. Schmidt, K. Schmieden, H. Schonning, K. Schopferer, S. Selyunin, A. Shevchenko, O.Yu. Silva, L. Sinha, L. Sirtl, S. Slunecka, M. Sozzi, F. Srnka, A. Stolarski, M. Sulc, M. Suzuki, H. Szabelski, A. Szameitat, T. Sznajder, P. Takekawa, S. Wolbeek, J. ter Tessaro, S. Tessarotto, F. Thibaud, F. Tosello, F. Tskhay, V. Uhl, S. Veloso, J. Virius, M. Weisrock, T. Wilfert, M. Windmolders, R. Zaremba, K. Zavertyaev, M. Zemlyanichkina, E. Ziembicki, M. Zink, A. |
author_facet | Adolph, C. Akhunzyanov, R. Alexeev, M.G. Alexeev, G.D. Amoroso, A. Andrieux, V. Anosov, V. Austregesilo, A. Azevedo, C. Badelek, B. Balestra, F. Barth, J. Baum, G. Beck, R. Bedfer, Y. Bernhard, J. Bicker, K. Bielert, E.R. Birsa, R. Bisplinghoff, J. Bodlak, M. Boer, M. Bordalo, P. Bradamante, F. Braun, C. Bressan, A. Buchele, M. Burtin, E. Capozza, L. Chang, W.C. Chiosso, M. Choi, I. Chung, S.U. Cicuttin, A. Crespo, M.L. Curiel, Q. Dalla Torre, S. Dasgupta, S.S. Dasgupta, S. Denisov, O.Yu. Dhara, L. Donskov, S.V. Doshita, N. Duic, V. Dziewiecki, M. Efremov, A. Eversheim, P.D. Eyrich, W. Ferrero, A. Finger, M. Finger, M., Jr. Fischer, H. Franco, C. von Hohenesche, N. du Fresne Friedrich, J.M. Frolov, V. Fuchey, E. Gautheron, F. Gavrichtchouk, O.P. Gerassimov, S. Giordano, F. Gnesi, I. Gorzellik, M. Grabmuller, S. Grasso, A. Grosse-Perdekamp, M. Grube, B. Grussenmeyer, T. Guskov, A. Haas, F. Hahne, D. von Harrach, D. Hashimoto, R. Heinsius, F.H. Herrmann, F. Hinterberger, F. Horikawa, N. d'Hose, N. Hsieh, C.Yu Huber, S. Ishimoto, S. Ivanov, A. Ivanshin, Yu. Iwata, T. Jahn, R. Jary, V. Jorg, P. Joosten, R. Kabuss, E. Ketzer, B. Khaustov, G.V. Khokhlov, Yu. A. Kisselev, Yu. Klein, F. Klimaszewski, K. Koivuniemi, J.H. Kolosov, V.N. Kondo, K. Konigsmann, K. Konorov, I. Konstantinov, V.F. Kotzinian, A.M. Kouznetsov, O. Kramer, M. Kremser, P. Krinner, F. Kroumchtein, Z.V. Kuchinski, N. Kunne, F. Kurek, K. Kurjata, R.P. Lednev, A.A. Lehmann, A. Levillain, M. Levorato, S. Lichtenstadt, J. Longo, R. Maggiora, A. Magnon, A. Makins, N. Makke, N. Mallot, G.K. Marchand, C. Martin, A. Marzec, J. Matousek, J. Matsuda, H. Matsuda, T. Meshcheryakov, G. Meyer, W. Michigami, T. Mikhailov, Yu. V. Miyachi, Y. Nagaytsev, A. Nagel, T. Nerling, F. Neyret, D. Nikolaenko, V.I. Novy, J. Nowak, W.D. Nunes, A.S. Olshevsky, A.G. Orlov, I. Ostrick, M. Panzieri, D. Parsamyan, B. Paul, S. Peng, J.C. Pereira, F. Pesek, M. Peshekhonov, D.V. Platchkov, S. Pochodzalla, J. Polyakov, V.A. Pretz, J. Quaresma, M. Quintans, C. Ramos, S. Regali, C. Reicherz, G. Riedl, C. Rocco, E. Rossiyskaya, N.S. Ryabchikov, D.I. Rychter, A. Samoylenko, V.D. Sandacz, A. Santos, C. Sarkar, S. Savin, I.A. Sbrizzai, G. Schiavon, P. Schmidt, K. Schmieden, H. Schonning, K. Schopferer, S. Selyunin, A. Shevchenko, O.Yu. Silva, L. Sinha, L. Sirtl, S. Slunecka, M. Sozzi, F. Srnka, A. Stolarski, M. Sulc, M. Suzuki, H. Szabelski, A. Szameitat, T. Sznajder, P. Takekawa, S. Wolbeek, J. ter Tessaro, S. Tessarotto, F. Thibaud, F. Tosello, F. Tskhay, V. Uhl, S. Veloso, J. Virius, M. Weisrock, T. Wilfert, M. Windmolders, R. Zaremba, K. Zavertyaev, M. Zemlyanichkina, E. Ziembicki, M. Zink, A. |
author_sort | Adolph, C. |
collection | CERN |
description | New results for the double spin asymmetry $A_1^{\rm p}$ and the proton longitudinal spin structure function $g_1^{\rm p}$ are presented. They were obtained by the COMPASS collaboration using polarised 200 GeV muons scattered off a longitudinally polarised NH$_3$ target. The data were collected in 2011 and complement those recorded in 2007 at 160\,GeV, in particular at lower values of $x$. They improve the statistical precision of $g_1^{\rm p}(x)$ by about a factor of two in the region $x\lesssim 0.02$. A next-to-leading order QCD fit to the $g_1$ world data is performed. It leads to a new determination of the quark spin contribution to the nucleon spin, $\Delta \Sigma$ ranging from 0.26 to 0.36, and to a re-evaluation of the first moment of $g_1^{\rm p}$. The uncertainty of $\Delta \Sigma$ is mostly due to the large uncertainty in the present determinations of the gluon helicity distribution. A new evaluation of the Bjorken sum rule based on the COMPASS results for the non-singlet structure function $g_1^{\rm NS}(x,Q^2)$ yields as ratio of the axial and vector coupling constants $|g_{\rm A}/g_{\rm V}| = 1.22 \pm 0.05~({\rm stat.}) \pm 0.10~({\rm syst.})$, which validates the sum rule to an accuracy of about 9%. |
id | cern-2004412 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2015 |
record_format | invenio |
spelling | cern-20044122023-09-01T04:27:27Zdoi:10.1016/j.physletb.2015.11.064http://cds.cern.ch/record/2004412engAdolph, C.Akhunzyanov, R.Alexeev, M.G.Alexeev, G.D.Amoroso, A.Andrieux, V.Anosov, V.Austregesilo, A.Azevedo, C.Badelek, B.Balestra, F.Barth, J.Baum, G.Beck, R.Bedfer, Y.Bernhard, J.Bicker, K.Bielert, E.R.Birsa, R.Bisplinghoff, J.Bodlak, M.Boer, M.Bordalo, P.Bradamante, F.Braun, C.Bressan, A.Buchele, M.Burtin, E.Capozza, L.Chang, W.C.Chiosso, M.Choi, I.Chung, S.U.Cicuttin, A.Crespo, M.L.Curiel, Q.Dalla Torre, S.Dasgupta, S.S.Dasgupta, S.Denisov, O.Yu.Dhara, L.Donskov, S.V.Doshita, N.Duic, V.Dziewiecki, M.Efremov, A.Eversheim, P.D.Eyrich, W.Ferrero, A.Finger, M.Finger, M., Jr.Fischer, H.Franco, C.von Hohenesche, N. du FresneFriedrich, J.M.Frolov, V.Fuchey, E.Gautheron, F.Gavrichtchouk, O.P.Gerassimov, S.Giordano, F.Gnesi, I.Gorzellik, M.Grabmuller, S.Grasso, A.Grosse-Perdekamp, M.Grube, B.Grussenmeyer, T.Guskov, A.Haas, F.Hahne, D.von Harrach, D.Hashimoto, R.Heinsius, F.H.Herrmann, F.Hinterberger, F.Horikawa, N.d'Hose, N.Hsieh, C.YuHuber, S.Ishimoto, S.Ivanov, A.Ivanshin, Yu.Iwata, T.Jahn, R.Jary, V.Jorg, P.Joosten, R.Kabuss, E.Ketzer, B.Khaustov, G.V.Khokhlov, Yu. A.Kisselev, Yu.Klein, F.Klimaszewski, K.Koivuniemi, J.H.Kolosov, V.N.Kondo, K.Konigsmann, K.Konorov, I.Konstantinov, V.F.Kotzinian, A.M.Kouznetsov, O.Kramer, M.Kremser, P.Krinner, F.Kroumchtein, Z.V.Kuchinski, N.Kunne, F.Kurek, K.Kurjata, R.P.Lednev, A.A.Lehmann, A.Levillain, M.Levorato, S.Lichtenstadt, J.Longo, R.Maggiora, A.Magnon, A.Makins, N.Makke, N.Mallot, G.K.Marchand, C.Martin, A.Marzec, J.Matousek, J.Matsuda, H.Matsuda, T.Meshcheryakov, G.Meyer, W.Michigami, T.Mikhailov, Yu. V.Miyachi, Y.Nagaytsev, A.Nagel, T.Nerling, F.Neyret, D.Nikolaenko, V.I.Novy, J.Nowak, W.D.Nunes, A.S.Olshevsky, A.G.Orlov, I.Ostrick, M.Panzieri, D.Parsamyan, B.Paul, S.Peng, J.C.Pereira, F.Pesek, M.Peshekhonov, D.V.Platchkov, S.Pochodzalla, J.Polyakov, V.A.Pretz, J.Quaresma, M.Quintans, C.Ramos, S.Regali, C.Reicherz, G.Riedl, C.Rocco, E.Rossiyskaya, N.S.Ryabchikov, D.I.Rychter, A.Samoylenko, V.D.Sandacz, A.Santos, C.Sarkar, S.Savin, I.A.Sbrizzai, G.Schiavon, P.Schmidt, K.Schmieden, H.Schonning, K.Schopferer, S.Selyunin, A.Shevchenko, O.Yu.Silva, L.Sinha, L.Sirtl, S.Slunecka, M.Sozzi, F.Srnka, A.Stolarski, M.Sulc, M.Suzuki, H.Szabelski, A.Szameitat, T.Sznajder, P.Takekawa, S.Wolbeek, J. terTessaro, S.Tessarotto, F.Thibaud, F.Tosello, F.Tskhay, V.Uhl, S.Veloso, J.Virius, M.Weisrock, T.Wilfert, M.Windmolders, R.Zaremba, K.Zavertyaev, M.Zemlyanichkina, E.Ziembicki, M.Zink, A.The Spin Structure Function $g_1^{\rm p}$ of the Proton and a Test of the Bjorken Sum RuleParticle Physics - ExperimentNew results for the double spin asymmetry $A_1^{\rm p}$ and the proton longitudinal spin structure function $g_1^{\rm p}$ are presented. They were obtained by the COMPASS collaboration using polarised 200 GeV muons scattered off a longitudinally polarised NH$_3$ target. The data were collected in 2011 and complement those recorded in 2007 at 160\,GeV, in particular at lower values of $x$. They improve the statistical precision of $g_1^{\rm p}(x)$ by about a factor of two in the region $x\lesssim 0.02$. A next-to-leading order QCD fit to the $g_1$ world data is performed. It leads to a new determination of the quark spin contribution to the nucleon spin, $\Delta \Sigma$ ranging from 0.26 to 0.36, and to a re-evaluation of the first moment of $g_1^{\rm p}$. The uncertainty of $\Delta \Sigma$ is mostly due to the large uncertainty in the present determinations of the gluon helicity distribution. A new evaluation of the Bjorken sum rule based on the COMPASS results for the non-singlet structure function $g_1^{\rm NS}(x,Q^2)$ yields as ratio of the axial and vector coupling constants $|g_{\rm A}/g_{\rm V}| = 1.22 \pm 0.05~({\rm stat.}) \pm 0.10~({\rm syst.})$, which validates the sum rule to an accuracy of about 9%.New results for the double spin asymmetry A1p and the proton longitudinal spin structure function g1p are presented. They were obtained by the COMPASS Collaboration using polarised 200 GeV muons scattered off a longitudinally polarised NH 3 target. The data were collected in 2011 and complement those recorded in 2007 at 160 GeV, in particular at lower values of x . They improve the statistical precision of g1p(x) by about a factor of two in the region x≲0.02 . A next-to-leading order QCD fit to the g1 world data is performed. It leads to a new determination of the quark spin contribution to the nucleon spin, ΔΣ, ranging from 0.26 to 0.36, and to a re-evaluation of the first moment of g1p . The uncertainty of ΔΣ is mostly due to the large uncertainty in the present determinations of the gluon helicity distribution. A new evaluation of the Bjorken sum rule based on the COMPASS results for the non-singlet structure function g1NS(x,Q2) yields as ratio of the axial and vector coupling constants |gA/gV|=1.22±0.05 (stat.)±0.10 (syst.) , which validates the sum rule to an accuracy of about 9%.New results for the double spin asymmetry $A_1^{\rm p}$ and the proton longitudinal spin structure function $g_1^{\rm p}$ are presented. They were obtained by the COMPASS collaboration using polarised 200 GeV muons scattered off a longitudinally polarised NH$_3$ target. The data were collected in 2011 and complement those recorded in 2007 at 160\,GeV, in particular at lower values of $x$. They improve the statistical precision of $g_1^{\rm p}(x)$ by about a factor of two in the region $x\lesssim 0.02$. A next-to-leading order QCD fit to the $g_1$ world data is performed. It leads to a new determination of the quark spin contribution to the nucleon spin, $\Delta \Sigma$ ranging from 0.26 to 0.36, and to a re-evaluation of the first moment of $g_1^{\rm p}$. The uncertainty of $\Delta \Sigma$ is mostly due to the large uncertainty in the present determinations of the gluon helicity distribution. A new evaluation of the Bjorken sum rule based on the COMPASS results for the non-singlet structure function $g_1^{\rm NS}(x,Q^2)$ yields as ratio of the axial and vector coupling constants $|g_{\rm A}/g_{\rm V}| = 1.22 \pm 0.05~({\rm stat.}) \pm 0.10~({\rm syst.})$, which validates the sum rule to an accuracy of about 9\%.arXiv:1503.08935CERN-PH-EP-2015-085CERN-PH-EP-2015-085oai:cds.cern.ch:20044122015-03-31 |
spellingShingle | Particle Physics - Experiment Adolph, C. Akhunzyanov, R. Alexeev, M.G. Alexeev, G.D. Amoroso, A. Andrieux, V. Anosov, V. Austregesilo, A. Azevedo, C. Badelek, B. Balestra, F. Barth, J. Baum, G. Beck, R. Bedfer, Y. Bernhard, J. Bicker, K. Bielert, E.R. Birsa, R. Bisplinghoff, J. Bodlak, M. Boer, M. Bordalo, P. Bradamante, F. Braun, C. Bressan, A. Buchele, M. Burtin, E. Capozza, L. Chang, W.C. Chiosso, M. Choi, I. Chung, S.U. Cicuttin, A. Crespo, M.L. Curiel, Q. Dalla Torre, S. Dasgupta, S.S. Dasgupta, S. Denisov, O.Yu. Dhara, L. Donskov, S.V. Doshita, N. Duic, V. Dziewiecki, M. Efremov, A. Eversheim, P.D. Eyrich, W. Ferrero, A. Finger, M. Finger, M., Jr. Fischer, H. Franco, C. von Hohenesche, N. du Fresne Friedrich, J.M. Frolov, V. Fuchey, E. Gautheron, F. Gavrichtchouk, O.P. Gerassimov, S. Giordano, F. Gnesi, I. Gorzellik, M. Grabmuller, S. Grasso, A. Grosse-Perdekamp, M. Grube, B. Grussenmeyer, T. Guskov, A. Haas, F. Hahne, D. von Harrach, D. Hashimoto, R. Heinsius, F.H. Herrmann, F. Hinterberger, F. Horikawa, N. d'Hose, N. Hsieh, C.Yu Huber, S. Ishimoto, S. Ivanov, A. Ivanshin, Yu. Iwata, T. Jahn, R. Jary, V. Jorg, P. Joosten, R. Kabuss, E. Ketzer, B. Khaustov, G.V. Khokhlov, Yu. A. Kisselev, Yu. Klein, F. Klimaszewski, K. Koivuniemi, J.H. Kolosov, V.N. Kondo, K. Konigsmann, K. Konorov, I. Konstantinov, V.F. Kotzinian, A.M. Kouznetsov, O. Kramer, M. Kremser, P. Krinner, F. Kroumchtein, Z.V. Kuchinski, N. Kunne, F. Kurek, K. Kurjata, R.P. Lednev, A.A. Lehmann, A. Levillain, M. Levorato, S. Lichtenstadt, J. Longo, R. Maggiora, A. Magnon, A. Makins, N. Makke, N. Mallot, G.K. Marchand, C. Martin, A. Marzec, J. Matousek, J. Matsuda, H. Matsuda, T. Meshcheryakov, G. Meyer, W. Michigami, T. Mikhailov, Yu. V. Miyachi, Y. Nagaytsev, A. Nagel, T. Nerling, F. Neyret, D. Nikolaenko, V.I. Novy, J. Nowak, W.D. Nunes, A.S. Olshevsky, A.G. Orlov, I. Ostrick, M. Panzieri, D. Parsamyan, B. Paul, S. Peng, J.C. Pereira, F. Pesek, M. Peshekhonov, D.V. Platchkov, S. Pochodzalla, J. Polyakov, V.A. Pretz, J. Quaresma, M. Quintans, C. Ramos, S. Regali, C. Reicherz, G. Riedl, C. Rocco, E. Rossiyskaya, N.S. Ryabchikov, D.I. Rychter, A. Samoylenko, V.D. Sandacz, A. Santos, C. Sarkar, S. Savin, I.A. Sbrizzai, G. Schiavon, P. Schmidt, K. Schmieden, H. Schonning, K. Schopferer, S. Selyunin, A. Shevchenko, O.Yu. Silva, L. Sinha, L. Sirtl, S. Slunecka, M. Sozzi, F. Srnka, A. Stolarski, M. Sulc, M. Suzuki, H. Szabelski, A. Szameitat, T. Sznajder, P. Takekawa, S. Wolbeek, J. ter Tessaro, S. Tessarotto, F. Thibaud, F. Tosello, F. Tskhay, V. Uhl, S. Veloso, J. Virius, M. Weisrock, T. Wilfert, M. Windmolders, R. Zaremba, K. Zavertyaev, M. Zemlyanichkina, E. Ziembicki, M. Zink, A. The Spin Structure Function $g_1^{\rm p}$ of the Proton and a Test of the Bjorken Sum Rule |
title | The Spin Structure Function $g_1^{\rm p}$ of the Proton and a Test of the Bjorken Sum Rule |
title_full | The Spin Structure Function $g_1^{\rm p}$ of the Proton and a Test of the Bjorken Sum Rule |
title_fullStr | The Spin Structure Function $g_1^{\rm p}$ of the Proton and a Test of the Bjorken Sum Rule |
title_full_unstemmed | The Spin Structure Function $g_1^{\rm p}$ of the Proton and a Test of the Bjorken Sum Rule |
title_short | The Spin Structure Function $g_1^{\rm p}$ of the Proton and a Test of the Bjorken Sum Rule |
title_sort | spin structure function $g_1^{\rm p}$ of the proton and a test of the bjorken sum rule |
topic | Particle Physics - Experiment |
url | https://dx.doi.org/10.1016/j.physletb.2015.11.064 http://cds.cern.ch/record/2004412 |
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kondok spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT konigsmannk spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT konorovi spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT konstantinovvf spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT kotzinianam spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT kouznetsovo spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT kramerm spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT kremserp spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT krinnerf spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT kroumchteinzv spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT kuchinskin spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT kunnef spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT kurekk spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT kurjatarp spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT lednevaa spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT lehmanna spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT levillainm spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT levoratos spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT lichtenstadtj spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT longor spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT maggioraa spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT magnona spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT makinsn spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT makken spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT mallotgk spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT marchandc spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT martina spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT marzecj spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT matousekj spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT matsudah spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT matsudat spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT meshcheryakovg spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT meyerw spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT michigamit spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT mikhailovyuv spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT miyachiy spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT nagaytseva spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT nagelt spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT nerlingf spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT neyretd spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT nikolaenkovi spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT novyj spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT nowakwd spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT nunesas spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT olshevskyag spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT orlovi spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT ostrickm spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT panzierid spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT parsamyanb spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT pauls spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT pengjc spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT pereiraf spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT pesekm spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT peshekhonovdv spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT platchkovs spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT pochodzallaj spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT polyakovva spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT pretzj spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT quaresmam spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT quintansc spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT ramoss spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT regalic spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT reicherzg spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT riedlc spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT roccoe spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT rossiyskayans spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT ryabchikovdi spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT rychtera spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT samoylenkovd spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT sandacza spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT santosc spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT sarkars spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT savinia spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT sbrizzaig spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT schiavonp spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT schmidtk spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT schmiedenh spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT schonningk spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT schopferers spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT selyunina spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT shevchenkooyu spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT silval spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT sinhal spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT sirtls spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT sluneckam spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT sozzif spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT srnkaa spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT stolarskim spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT sulcm spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT suzukih spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT szabelskia spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT szameitatt spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT sznajderp spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT takekawas spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT wolbeekjter spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT tessaros spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT tessarottof spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT thibaudf spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT tosellof spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT tskhayv spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule AT uhls spinstructurefunctiong1rmpoftheprotonandatestofthebjorkensumrule 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