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^3He spin-dependent cross sections and sum rules

Slifer, K. and Amarian, M. and Auerbach, L. and Averett, T. and Berthot, J. and Bertin, P. and Bertozzi, B. and Black, T. and Brash, E. and Brown, D. and Burtin, E. and Calarco, J. and Cates, G. and Chai, Z. and Chen, J. P. and Choi, Seonho and Chudakov, E. and Ciofi degli Atti, C. and Cisbani, E. and de Jager, C. W. and Deur, A. and DiSalvo, R. and Dieterich, S. and Djawotho, P. and Finn, M. and Fissum, K. and Fonvieille, H. and Frullani, S. and Gao, H. and Gao, J. and Garibaldi, F. and Gasparian, A. and Gilad, S. and Gilman, R. and Glamazdin, A. and Glashausser, C. and Glöckle, W. and Golak, J. and Goldberg, E. and Gomez, J. and Gorbenko, V. and Hansen, J.-O. and Hersman, B. and Holmes, R. and Huber, G. M. and Hughes, E. and Humensky, B. and Incerti, S. and Iodice, M. and Jensen, S. and Jiang, X. and Jones, C. and Jones, G. and Jones, M. and Jutier, C. and Kamada, H. and Ketikyan, A. and Kominis, I. and Korsch, W. and Kramer, K. and Kumar, K. and Kumbartzki, G. and Kuss, M. and Lakuriqi, E. and Laveissiere, G. and Lerose, J. J. and Liang, M. and Liyanage, N. and Lolos, G. and Malov, S. and Marroncle, J. and McCormick, K. and McKeown, R. D. and Meziani, Z. E. and Michaels, R. and Mitchell, J. and Nogga, A. and Pace, E. and Papandreou, Z. and Pavlin, T. and Petratos, G. G. and Pripstein, D. and Prout, D. and Ransome, R. and Roblin, Y. and Rowntree, D. and Rvachev, M. and Sabatié, F. and Saha, A. and Salmè, G. and Scopetta, S. and Skibiński, R. and Souder, P. and Saito, T. and Strauch, S. and Suleiman, R. and Takahashi, K. and Teijiro, S. and Todor, L. and Tsubota, H. and Ueno, H. and Urciuoli, G. and Van der Meer, R. and Vernin, P. and Voskanian, H. and Witała, H. and Wojtsekhowski, B. and Xiong, F. and Xu, W. and Yang, J. C. and Zhang, B. and Zolnierczuk, P. (2008) ^3He spin-dependent cross sections and sum rules. Physical Review Letters, 101 (2). Art. No. 022303. ISSN 0031-9007. doi:10.1103/PhysRevLett.101.022303.

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We present a measurement of the spin-dependent cross sections for the ^3He(e,e) X reaction in the quasielastic and resonance regions at a four-momentum transfer 0:1 ≤ Q^2 ≤ 0:9 GeV^2. The spin-structure functions have been extracted and used to evaluate the nuclear Burkhardt-Cottingham and extended Gerasimov-Drell-Hearn sum rules for the first time. The data are also compared to an impulse approximation calculation and an exact three-body Faddeev calculation in the quasielastic region.

Item Type:Article
Related URLs:
URLURL TypeDescription
Cisbani, E.0000-0002-6774-8473
Fissum, K.0000-0001-8212-9438
Glamazdin, A.0000-0002-4172-7324
Gomez, J.0000-0001-7745-0913
Huber, G. M.0000-0002-5658-1065
Incerti, S.0000-0002-0619-2053
Kamada, H.0000-0001-6519-9645
Kumar, K.0000-0001-5318-4622
Kumbartzki, G.0000-0003-4537-9280
Nogga, A.0000-0003-2156-748X
Papandreou, Z.0000-0002-5592-8135
Sabatié, F.0000-0001-7031-3975
Salmè, G.0000-0002-9209-3464
Alternate Title:3He spin-dependent cross sections and sum rules
Additional Information:© 2008 The American Physical Society. Received 18 March 2008; published 11 July 2008. This work was supported by the U.S. Department of Energy, the National Science Foundation, the French Commissariat à l’Energie Atomique (CEA), the Centre National de la Recherche Scientifique (CNRS), and the Helmholtz Association through the virtual institute ‘‘Spin and strong QCD’’ (No. VH-VI-231). The numerical calculations were performed on the IBM Regatta p690 of the NIC in Ju¨lich, Germany. The Southeastern Universities Research Association operates the Thomas Jefferson National Accelerator Facility for the DOE under Contract No. DE-AC05-84ER40150, mod. No. 175. PACS numbers: 25.30.Rw, 11.55.Hx, 13.60.Hb, 24.70.+s
Funding AgencyGrant Number
Department of Energy (DOE)DE-AC05-84ER40150
Commissariat à l’Energie Atomique (CEA)UNSPECIFIED
Centre National de la Recherche Scientifique (CNRS)UNSPECIFIED
Helmholtz AssociationVH-VI-231
Issue or Number:2
Record Number:CaltechAUTHORS:20090610-093531549
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Usage Policy:No commercial reproduction, distribution, display or performance rights in this work are provided.
ID Code:14386
Deposited By: Ruth Sustaita
Deposited On:19 Aug 2009 16:32
Last Modified:08 Nov 2021 23:11

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