English

New extended method for $\psi^{\prime}$ scaling function of inclusive electron scattering

Nuclear Theory 2023-08-15 v1

Abstract

Scaling analyses have been successfully applied to study the inclusive electron scattering (e,e)(\textit{e}, \textit{e}^{\prime}) over the past few decades. In this paper, we utilize the ψ\psi^{\prime} scaling function in momentum space to analyze the (e,e)(\textit{e}, \textit{e}^{\prime}) cross sections, where the nucleon momentum distributions are derived from self-consistent mean-field calculations. By further introducing the energy and momentum conservation in the scaling analysis, an improved ψ\psi^{\prime} scaling function is proposed to investigate the high-momentum part of the momentum distributions. Using the proposed scaling function, we systematically explore the effects of the nucleon-nucleon short-range correlation (NN\textit{NN}-SRC) on the (e,e)(\textit{e}, \textit{e}^{\prime}) cross sections. From the experimental (e,e)(\textit{e}, \textit{e}^{\prime}) data, the \textit{NN}-SRC strength is further extracted within the framework of the improved ψ\psi^{\prime} scaling function. The studies in this paper offer a new method to investigate the nucleon momentum distributions and the NN\textit{NN}-SRC effects in nuclei.

Keywords

Cite

@article{arxiv.2308.06506,
  title  = {New extended method for $\psi^{\prime}$ scaling function of inclusive electron scattering},
  author = {Lei Wang and Qinglin Niu and Jinjuan Zhang and Jian Liu and Zhongzhou Ren},
  journal= {arXiv preprint arXiv:2308.06506},
  year   = {2023}
}