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Title Moments of the neutron $g_2$ structure function at intermediate $Q^2$
Authors P. Solvignon, Nilanga Liyanage, Jian-Ping Chen, Seonho Choi, Karl Slifer, Konrad Aniol, Todd Averett, Werner Boeglin, Alexandre Camsonne, Gordon Cates, C. Chang, Eugene Chudakov, Brandon Craver, Francesco Cusanno, Alexandre Deur, Dipangkar Dutta, Rolf Ent, Robert Feuerbach, Salvatore Frullani, Haiyan Gao, Franco Garibaldi, Ronald Gilman, Charles Glashausser, Viktor Gorbenko, Jens-Ole Hansen, Douglas Higinbotham, Hassan Abdalla, Mark Jones, Aidan Kelleher, James Kelly, Cynthia Keppel, Wooyoung Kim, Wolfgang Korsch, Kevin Kramer, Gerfried Kumbartzki, John LeRose, Richard Lindgren, Bin Ma, Demetrius Margaziotis, Pete Markowitz, Kathy McCormick, Zein-Eddine Meziani, Robert Michaels, Bryan Moffit, Peter Monaghan, Carlos Munoz Camacho, Kent Paschke, Bodo Reitz, Arunava Saha, Jaideep Singh, Vincent Sulkosky, William Tobias, Guido Maria Urciuoli, Kebin Wang, Krishni Wijesooriya, Bogdan Wojtsekhowski, Seungtae Woo, Jae-Choon Yang, Xiaochao Zheng, Lingyan Zhu
JLAB number JLAB-PHY-13-1718
LANL number arXiv:1304.4497
Other number DOE/OR/23177-2529
Document Type(s) (Journal Article) 
Associated with EIC: No
Supported by Jefferson Lab LDRD Funding: No
 

Journal
Compiled for Physical Review C
Volume 92
Issue 01
Page(s) 015208
Refereed
Publication Abstract: We present new experimental results for the $^3$He spin structure function $g_2$ in the resonance region at $Q^2$ values between 1.2 and 3.0 (GeV/c)$^2$. Spin dependent moments of the neutron were then extracted. The resonance contribution to the neutron $d_2$ matrix element was found to be small at $\langle Q^2 \rangle$=2.4 (GeV/c)$^2$ and in agreement with the Lattice QCD calculation. The Burkhardt-Cottingham sum rule for neutron was tested with the measured data and using the Wandzura-Wilczek relation for the low $x$ unmeasured region.
Experiment Numbers: E01-012
Group: Hall A
Document: pdf
DOI: http://dx.doi.org/10.1103/PhysRevC.92.015208
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