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$Q^2$ evolution of the neutron spin structure moments using a $^3He$ target

Authors :
Amarian, M.
Auerbach, L.
Averett, T.
Berthot, J.
Bertin, P.
Bertozzi, B.
Black, T.
Brash, E.
Brown, D.
Burtin, E.
Calarco, J.
Cates, G.
Chai, Z.
Chen, J. -P
Choi, S.
Chudakov, E.
Cisbani, E.
Jager, C. W.
Deur, A.
Disalvo, R.
Dieterich, S.
Djawotho, P.
Finn, M.
Fissum, K.
Fonvieille, H.
Frullani, S.
Gao, H.
Gao, J.
Garibaldi, F.
Gasparian, A.
Gilad, S.
Gilman, R.
Alexander Glamazdin
Glashausser, C.
Goldberg, E.
Gomez, J.
Gorbenko, V.
Hansen, J. -O
Hersman, B.
Holmes, R.
Huber, G. M.
Hughes, E.
Humensky, B.
Incerti, S.
Iodice, M.
Jensen, S.
Jiang, X.
Jones, C.
Jones, G.
Jones, M.
Jutier, C.
Ketikyan, A.
Kominis, I.
Korsch, W.
Kramer, K.
Kumar, K.
Kumbartzki, G.
Kuss, M.
Lakuriqi, E.
Laveissiere, G.
Lerose, J.
Liang, M.
Liyanage, N.
Lolos, G.
Malov, S.
Marroncle, J.
Mccormick, K.
Mckeown, R.
Meziani, Z. -E
Michaels, R.
Mitchell, J.
Papandreou, Z.
Pavlin, T.
Petratos, G. G.
Pripstein, D.
Prout, D.
Ransome, R.
Roblin, Y.
Rowntree, D.
Rvachev, M.
Sabatie, F.
Saha, A.
Slifer, K.
Souder, P.
Saito, T.
Strauch, S.
Suleiman, R.
Takahashi, K.
Teijiro, S.
Todor, L.
Tsubota, H.
Ueno, H.
Urciuoli, G.
Meer, R.
Vernin, P.
Voskanian, H.
Wojtsekhowski, B.
Xiong, F.
Xu, W.
Yang, J. -C
Zhang, B.
Zolnierczuk, P.
Pellet, Jeanine
Laboratoire de Physique Corpusculaire - Clermont-Ferrand (LPC)
Université Blaise Pascal - Clermont-Ferrand 2 (UBP)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)
E94010
Source :
DOE / OSTI, Physical Review Letters, Physical Review Letters, American Physical Society, 2004, 92, pp.022301-1-022301, ResearcherID, Scopus-Elsevier, Physical Review Letters, 2004, 92, pp.022301-1-022301
Publication Year :
2004
Publisher :
HAL CCSD, 2004.

Abstract

We have measured the spin structure functions $g_1$ and $g_2$ of $^3$He in a double-spin experiment by inclusively scattering polarized electrons at energies ranging from 0.862 to 5.07 GeV off a polarized $^3$He target at a 15.5$^{\circ}$ scattering angle. Excitation energies covered the resonance and the onset of the deep inelastic regions. We have determined for the first time the $Q^2$ evolution of $\Gamma_1(Q^2)=\int_0^{1} g_1(x,Q^2) dx$, $\Gamma_2(Q^2)=\int_0^1 g_2(x,Q^2) dx$ and $d_2 (Q^2) = \int_0^1 x^2[ 2g_1(x,Q^2) + 3g_2(x,Q^2)] dx$ for the neutron in the range 0.1 GeV$^2$ $\leq Q^2 \leq $ 0.9 GeV$^2$ with good precision. $ \Gamma_1(Q^2)$ displays a smooth variation from high to low $Q^2$. The Burkhardt-Cottingham sum rule holds within uncertainties and $d_2$ is non-zero over the measured range.<br />Comment: 5 pages, 2 figures, submitted to Phys. Rev. Lett.. Updated Hermes data in Fig. 2 (top panel) and their corresponding reference. Updated the low x extrapolation error Fig. 2 (middle panel). Corrected references to ChiPT calculations

Details

Language :
English
ISSN :
00319007 and 10797114
Database :
OpenAIRE
Journal :
DOE / OSTI, Physical Review Letters, Physical Review Letters, American Physical Society, 2004, 92, pp.022301-1-022301, ResearcherID, Scopus-Elsevier, Physical Review Letters, 2004, 92, pp.022301-1-022301
Accession number :
edsair.doi.dedup.....084e90191ac548296d2f1b34dc804158