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Compton scattering of twisted light: Angular distribution and polarization of scattered photons

机译:扭曲光的康普顿散射:散射光子的角分布和偏振

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Compton scattering of twisted photons is investigated within a nonrelativistic framework using first-order perturbation theory. We formulate the problem in the density-matrix theory, which enables one to gain new insights into scattering processes of twisted particles by exploiting the symmetries of the system. In particular, we analyze how the angular distribution and polarization of the scattered photons are affected by the parameters of the initial beam such as the opening angle and the projection of orbital angular momentum. We present analytical and numerical results for the angular distribution and the polarization of Compton scattered photons for initially twisted light and compare them with the standard case of plane-wave light.
机译:使用一阶扰动理论在非相对论框架内研究了扭曲光子的康普顿散射。我们用密度矩阵理论公式化了这个问题,该理论使人们能够通过利用系统的对称性获得对扭曲粒子散射过程的新见解。特别是,我们分析了散射光子的角度分布和偏振如何受到初始光束参数(例如张角和轨道角动量投影)的影响。我们提供了最初扭曲的光的康普顿散射光子的角度分布和偏振的解析和数值结果,并将它们与平面波光的标准情况进行了比较。

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