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Published July 11, 2014 | Published + Submitted
Journal Article Open

Precision Measurement of the Neutron Twist-3 Matrix Element d^n_2: Probing Color Forces

Abstract

Double-spin asymmetries and absolute cross sections were measured at large Bjorken x  (0.25≤x≤0.90), in both the deep-inelastic and resonance regions, by scattering longitudinally polarized electrons at beam energies of 4.7 and 5.9 GeV from a transversely and longitudinally polarized ^3He target. In this dedicated experiment, the spin structure function g^3He_2 was determined with precision at large x, and the neutron twist-3 matrix element dn2 was measured at ⟨Q2⟩ of 3.21 and 4.32  GeV^2/c^2, with an absolute precision of about 10^(−5). Our results are found to be in agreement with lattice QCD calculations and resolve the disagreement found with previous data at ⟨Q^2⟩=5  GeV^2/c^2. Combining d^n_2 and a newly extracted twist-4 matrix element f^n_2, the average neutron color electric and magnetic forces were extracted and found to be of opposite sign and about 30  MeV/fm in magnitude.

Additional Information

© 2014 American Physical Society. Received 15 April 2014; published 11 July 2014. We would like to thank the JLab Hall A technical staff and Accelerator Division for their outstanding support, as well as M. Burkardt, L. P. Gamberg, W. Melnitchouk, A. Metz, and J. Soffer for their useful discussions. One of us (Z.-E. M.) would like to particularly thank X.-D. Ji for his encouragement to propose and perform this measurement since 1995. This work was supported in part by DOE Grants No. DE-FG02-87ER40315 and No. DE-FG02-94ER40844 (from Temple University). Jefferson Lab is operated by the Jefferson Science Associates, LLC, under DOE Grant No. DE-AC05-060R23177.

Attached Files

Published - PhysRevLett.113.022002.pdf

Submitted - 1404.4003v4.pdf

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August 20, 2023
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