Nuclear transparencies with a two step process of the $A(e,e'π^+)$ reactions

Tae Keun Choi, Kook-Jin Kong, Byung-Geel Yu
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Abstract

Nuclear transparency in pion-induced nuclear reactions has been investigated on the basis of Glauber multiple scattering theory considering a two-step process within the framework of vector meson dominance (VMD). In the present context, the application of the quantum diffusion model (QDM) to the Glauber theory plays a role in explaining the dependence of the transparency on the four momentum transfer squared $Q^2$. % as shown in the experimental data. The short-range correlation (SRC) considered further gives the contribution to the magnitude of the transparency by a constant amount independent of the $Q^2$ variation, and the results from the QDM and SRC overestimate the experimental data. The inclusion of the two-step process with the $\rho N$ scattering cross section, $\sigma_{\rho N}=3 $ mb has the effect of reducing the transparency and thus leads to a good agreement with the experimental data on the reaction $A(e,e'\pi^+)$ for $^{12}$C, $^{27}$Al, $^{63}$Cu and $^{197}$Au nuclei.
带有 $A(e,e'π^+)$反应两步过程的核透射图
在矢量介子主导(VMD)框架内,基于考虑到两步过程的格劳伯多重散射理论,研究了先驱诱导核反应中的核透明性。在目前的背景下,量子扩散模型(QDM)在格劳伯理论中的应用在解释透明度对四动量传递平方 $Q^2$ 的依赖性方面发挥了作用。正如实验数据所示。进一步考虑的短程相关性(SRC)对透明度的贡献是一个与 $Q^2$ 变化无关的常数,QDM 和 SRC 的结果高估了实验数据。将两步过程与$\rho N$ 散射截面($\sigma_{\rho N}=3 $ mb)结合起来,具有降低透明度的效果,因此与$^{12}$C、$^{27}$Al、$^{63}$Cu 和 $^{197}$Au 核的反应$A(e,e'\pi^+)$ 的实验数据非常一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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