Constraints on the onset of color transparency from quasielastic C12(e,ep) up to Q2=14.2(GeV/c)2

D. Bhetuwal et al. (Hall C Collaboration)
Phys. Rev. C 108, 025203 – Published 14 August 2023

Abstract

Quasielastic scattering on C12(e,ep) was measured in Hall C at Jefferson Lab for spacelike four-momentum transfer squared Q2 in the range of 814.2(GeV/c)2 with proton momenta up to 8.3GeV/c. The experiment was carried out in the upgraded Hall C at Jefferson Lab. It used the existing high-momentum spectrometer and the new super-high-momentum spectrometer to detect the scattered electrons and protons in coincidence. The nuclear transparency was extracted as the ratio of the measured yield to the yield calculated in the plane wave impulse approximation. Additionally, the transparency of the 1s1/2 and 1p3/2 shell protons in C12 was extracted, and the asymmetry of the missing momentum distribution was examined for hints of the quantum chromodynamics prediction of color transparency. All of these results were found to be consistent with traditional nuclear physics and inconsistent with the onset of color transparency.

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  • Received 27 May 2022
  • Revised 7 April 2023
  • Accepted 17 July 2023

DOI:https://doi.org/10.1103/PhysRevC.108.025203

©2023 American Physical Society

Physics Subject Headings (PhySH)

Nuclear Physics

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Vol. 108, Iss. 2 — August 2023

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