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Nuclear Experiment

arXiv:1505.07877 (nucl-ex)
[Submitted on 28 May 2015 (v1), last revised 1 Jun 2015 (this version, v2)]

Title:Precise Determination of the Deuteron Spin Structure at Low to Moderate $Q^2$ with CLAS and Extraction of the Neutron Contribution

Authors:N. Guler, R.G. Fersch, S.E. Kuhn, P. Bosted, K.A. Griffioen, C. Keith, R. Minehart, Y. Prok, K.P. Adhikari, D. Adikaram, M.J. Amaryan, M.D. Anderson, S. Anefalos Pereira, J. Ball, M. Battaglieri, V. Batourine, I. Bedlinskiy, W.J. Briscoe, W.K. Brooks, S. Bultmann, V.D. Burkert, D.S. Carman, A. Celentano, S. Chandavar, G. Charles, L. Colaneri, P.L. Cole, M. Contalbrigo, D. Crabb, V. Crede, A. D Angelo, N. Dashyan, A. Deur, C. Djalali, G.E. Dodge, R. Dupre, A. El Alaoui, L. El Fassi, L. Elouadrhiri, P. Eugenio, G. Fedotov, S. Fegan, A. Filippi, J.A. Fleming, T.A. Forest, B. Garillon, M. Garcon, N. Gevorgyan, G.P. Gilfoyle, K.L. Giovanetti, F.X. Girod, J.T. Goetz, E. Golovatch, R.W. Gothe, M. Guidal, L. Guo, K. Hafidi, H. Hakobyan, N. Harrison, M. Hattawy, K. Hicks, D. Ho, M. Holtrop, S.M. Hughes, C.E. Hyde, D.G. Ireland, B.S. Ishkhanov, E.L. Isupov, H.S. Jo, K. Joo, S. Joosten, D. Keller, M. Khandaker, A. Kim, W. Kim, A. Klein, F.J. Klein, V. Kubarovsky, S.V. Kuleshov, K. Livingston, H.Y. Lu, I.J.D. MacGregor, B. McKinnon, M. Mirazita, V. Mokeev, R.A. Montgomery, A Movsisyan, C. Munoz Camacho, P. Nadel-Turonski, L.A. Net, I. Niculescu, M. Osipenko, A.I. Ostrovidov, K. Park, E. Pasyuk, S. Pisano, O. Pogorelko, J.W. Price, S. Procureur, M. Ripani
, A. Rizzo, G. Rosner, P. Rossi, P. Roy, F. Sabatie, C. Salgado, D. Schott, R.A. Schumacher, E. Seder, A. Simonyan, Iu. Skorodumina, D. Sokhan, N. Sparveris, I.I. Strakovsky, S. Strauch, V. Sytnik, Ye Tian, S. Tkachenko, M. Ungaro, E. Voutier, N.K. Walford, X. Wei, L.B. Weinstein, M.H. Wood, N. Zachariou, L. Zana, J. Zhang, Z.W. Zhao, I. Zonta
et al. (29 additional authors not shown)  You must enable JavaScript to view entire author list.
View a PDF of the paper titled Precise Determination of the Deuteron Spin Structure at Low to Moderate $Q^2$ with CLAS and Extraction of the Neutron Contribution, by N. Guler and 128 other authors
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Abstract:We present the final results for the deuteron spin structure functions obtained from the full data set collected with Jefferson Lab's CLAS in 2000-2001. Polarized electrons with energies of 1.6, 2.5, 4.2 and 5.8 GeV were scattered from deuteron ($^{15}$ND$_3$) targets, dynamically polarized along the beam direction, and detected with CLAS. From the measured double spin asymmetry, the virtual photon absorption asymmetry $A_1^d$ and the polarized structure function $g_1^d$ were extracted over a wide kinematic range (0.05 GeV$^2 < Q^2 <$ 5 GeV$^2$ and 0.9 GeV $< W <$ 3 GeV). We use an unfolding procedure and a parametrization of the corresponding proton results to extract from these data the polarized structure functions $A_1^n$ and $g_1^n$ of the (bound) neutron, which are so far unknown in the resonance region, $W < 2$ GeV. We compare our final results, including several moments of the deuteron and neutron spin structure functions, with various theoretical models and expectations as well as parametrizations of the world data. The unprecedented precision and dense kinematic coverage of these data can aid in future extractions of polarized parton distributions, tests of perturbative QCD predictions for the quark polarization at large $x$, a better understanding of quark-hadron duality, and more precise values for higher-twist matrix elements in the framework of the Operator Product Expansion.
Comments: To be published in Phys. Rev. C
Subjects: Nuclear Experiment (nucl-ex)
Cite as: arXiv:1505.07877 [nucl-ex]
  (or arXiv:1505.07877v2 [nucl-ex] for this version)
  https://doi.org/10.48550/arXiv.1505.07877
arXiv-issued DOI via DataCite
Journal reference: Phys. Rev. C 92, 055201 (2015)
Related DOI: https://doi.org/10.1103/PhysRevC.92.055201
DOI(s) linking to related resources

Submission history

From: Sebastian E. Kuhn [view email]
[v1] Thu, 28 May 2015 22:36:33 UTC (684 KB)
[v2] Mon, 1 Jun 2015 14:56:30 UTC (684 KB)
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