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Measurement of the 3He Spin-Structure Functions and of Neutron (3He) Spin-Dependent Sum Rules at 0.035<Q^2<0.24 GeV^2

Authors :
Sulkosky, V.
Singh, J. T.
Peng, C.
Chen, J. -P.
Deur, A.
Abrahamyan, S.
Aniol, K. A.
Armstrong, D. S.
Averett, T.
Bailey, S. L.
Beck, A.
Bertin, P.
Butaru, F.
Boeglin, W.
Camsonne, A.
Cates, G. D.
Chang, C. C.
Choi, Seonho
Chudakov, E.
Coman, L.
Cornejo, J. C
Craver, B.
Cusanno, F.
De Leo, R.
de Jager, C. W.
Denton, J. D.
Dhamija, S.
Feuerbach, R.
Finn, J. M.
Frullani, S.
Fuoti, K.
Gao, H.
Garibaldi, F.
Gayou, O.
Gilman, R.
Glamazdin, A.
Glashausser, C.
Gomez, J.
Hansen, J. -O.
Hayes, D.
Hersman, B.
Higinbotham, D. W.
Holmstrom, T.
Humensky, T. B.
Hyde, C. E.
Ibrahim, H.
Iodice, M.
Jiang, X.
Kaufman, L. J.
Kelleher, A.
Keister, K. E.
Kim, W.
Kolarkar, A.
Kolb, N.
Korsch, W.
Kramer, K.
Kumbartzki, G.
Lagamba, L.
Laine, V.
Laveissiere, G.
Lerose, J. J.
Lhuillier, D.
Lindgren, R.
Liyanage, N.
Lu, H. -J.
Ma, B.
Margaziotis, D. J.
Markowitz, P.
McCormick, K.
Meziane, M.
Meziani, Z. -E.
Michaels, R.
Moffit, B.
Monaghan, P.
Nanda, S.
Niedziela, J.
Niskin, M.
Pandolfi, R.
Paschke, K. D.
Potokar, M.
Puckett, A.
Punjabi, V. A.
Qiang, Y.
Ransome, R.
Reitz, B.
Roche, R.
Saha, A.
Shabetai, A.
Sirca, S.
Slifer, K.
Snyder, R.
Solvignon, P.
Stringer, R.
Subedi, R.
Tobias, W. A.
Ton, N.
Ulmer, P. E.
Urciuoli, G. M.
Vacheret, A.
Voutier, E.
Wang, K.
Wan, L.
Wojtsekhowski, B.
Woo, S.
Yao, H.
Yuan, J.
Zhan, X.
Zheng, X.
Zhu, L.
Source :
Phys.Lett.B 805 135428 (2020)
Publication Year :
2019

Abstract

The spin-structure functions $g_1$ and $g_2$, and the spin-dependent partial cross-section $\sigma_\mathrm{TT}$ have been extracted from the polarized cross-sections differences, $\Delta \sigma_{\parallel}\hspace{-0.06cm}\left(\nu,Q^{2}\right)$ and $\Delta \sigma_{\perp}\hspace{-0.06cm}\left(\nu,Q^{2}\right)$ measured for the $\vec{^\textrm{3}\textrm{He}}(\vec{\textrm{e}},\textrm{e}&#39;)\textrm{X}$ reaction, in the E97-110 experiment at Jefferson Lab. Polarized electrons with energies from 1.147 to 4.404 GeV were scattered at angles of 6$^{\circ}$ and 9$^{\circ}$ from a longitudinally or transversely polarized $^{3}$He target. The data cover the kinematic regions of the quasi-elastic, resonance production and beyond. From the extracted spin-structure functions, the first moments $\overline{\Gamma_1}\hspace{-0.06cm}\left(Q^{2}\right)$, $\Gamma_2\hspace{-0.06cm}\left(Q^{2}\right)$ and $I_{\mathrm{TT}}\hspace{-0.06cm}\left(Q^{2}\right)$ are evaluated with high precision for the neutron in the $Q^2$ range from 0.035 to 0.24~GeV$^{2}$. The comparison of the data and the chiral effective field theory predictions reveals the importance of proper treatment of the $\Delta$ degree of freedom for spin observables.&lt;br /&gt;Comment: 7 pages, 5 figures, 3 tables. Version published in Phys. Lett. B

Details

Database :
arXiv
Journal :
Phys.Lett.B 805 135428 (2020)
Publication Type :
Report
Accession number :
edsarx.1908.05709
Document Type :
Working Paper
Full Text :
https://doi.org/10.1016/j.physletb.2020.135428