English

On the Transfer of Polarization from the Initial to the Final Proton in the Elastic Process $ e \vec {p} \to e \vec {p}$

High Energy Physics - Phenomenology 2021-08-09 v2 High Energy Physics - Experiment

Abstract

The Q2Q^2 dependence of the ratio of the cross sections with and without proton spin flip, as well as the polarization asymmetry in the process epepe \vec{p} \to e \vec{p} has been numerically analyzed using the results of JLab polarization experiments on the measurements of the ratio of the Sachs form factors in the epep\vec{e} p \to e \vec{p} process. The calculations have been made for the case where the initial (at rest) and final protons are fully polarized and have a common spin quantization axis, which coincides with the direction of motion of the final proton. The longitudinal polarization transfer to the proton has been calculated in the case of the partially polarized initial proton for a kinematics used in the experiment reported in [A. Liyanage et al. (SANE Collaboration), Phys. Rev. C 101, 035206 (2020)], where the double spin asymmetry was measured in the epep\vec{e} \vec{p} \to e p process. A noticeable sensitivity of the polarization transfer to the proton to the form of the Q2Q^2 dependence of the ratio μpGE/GM\mu_p G_E/G_M has been found. This sensitivity may be used to conduct a new independent experiment to measure this dependence in the epep e \vec{p} \to e \vec{p} process. A criterion to assess the reliability of measurements of the ratio of Sachs form factors using the Rosenbluth technique has been proposed and used to analyze the results of two experiments.

Keywords

Cite

@article{arxiv.2107.08503,
  title  = {On the Transfer of Polarization from the Initial to the Final Proton in the Elastic Process $ e \vec {p} \to e \vec {p}$},
  author = {M. V. Galynskii},
  journal= {arXiv preprint arXiv:2107.08503},
  year   = {2021}
}

Comments

V2: A missed word in the abstract is inserted, formula (18) in the text fixed