Evaluation of cross section of elastic scattering for non-relativistic and relativistic particles by means of fundamental scattering formulas

Huailong Wang
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引用次数: 2

Abstract

In evaluating differential cross section of elastic scattering, different theories were applied to low-momentum and relativistic particles. For low-momentum motion, Lippmann-Schwinger scattering equation was applied, called fundamental formula; while for relativistic particles, a general scattering theory was used which calculates S matrix. In this paper, Lippmann-Schwinger equation is applied uniformly to both low-momentum and relativistic particles. The cross sections are valuated to the first order of Born approximation. One-body time-independent Green’s functions for relativistic free particles are given. Compared to the general scattering theory, the fundamental theory has a clearer physical picture and the approximations made are more explicit.
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用基本散射公式计算非相对论性和相对论性粒子的弹性散射截面
在计算弹性散射的微分截面时,对低动量粒子和相对论性粒子采用了不同的理论。对于低动量运动,应用Lippmann-Schwinger散射方程,称为基本公式;而对于相对论性粒子,则采用一般散射理论计算S矩阵。本文将Lippmann-Schwinger方程统一应用于低动量粒子和相对论性粒子。截面的取值为玻恩近似的一阶。给出了相对论性自由粒子的单体时间无关格林函数。与一般散射理论相比,基本理论具有更清晰的物理图景和更明确的近似。
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