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Neutron Valence Structure from Nuclear Deep Inelastic Scattering.

作者信息

Segarra E P, Schmidt A, Kutz T, Higinbotham D W, Piasetzky E, Strikman M, Weinstein L B, Hen O

机构信息

Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

George Washington University, Washington, D.C. 20052, USA.

出版信息

Phys Rev Lett. 2020 Mar 6;124(9):092002. doi: 10.1103/PhysRevLett.124.092002.

DOI:10.1103/PhysRevLett.124.092002
PMID:32202871
Abstract

Mechanisms of spin-flavor SU(6) symmetry breaking in quantum chromodynamics (QCD) are studied via an extraction of the free neutron structure function from a global analysis of deep inelastic scattering (DIS) data on the proton and on nuclei from A=2 (deuterium) to 208 (lead). Modification of the structure function of nucleons bound in atomic nuclei (known as the EMC effect) are consistently accounted for within the framework of a universal modification of nucleons in short-range correlated (SRC) pairs. Our extracted neutron-to-proton structure function ratio F_{2}^{n}/F_{2}^{p} becomes constant for x_{B}≥0.6, equaling 0.47±0.04 as x_{B}→1, in agreement with theoretical predictions of perturbative QCD and the Dyson-Schwinger equation, and in disagreement with predictions of the scalar diquark dominance model. We also predict F_{2}^{^{3}He}/F_{2}^{^{3}H}, recently measured, as yet unpublished, by the MARATHON Collaboration, the nuclear correction function that is needed to extract F_{2}^{n}/F_{2}^{p} from F_{2}^{^{3}He}/F_{2}^{^{3}H}, and the theoretical uncertainty associated with this extraction.

摘要

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