原子光电子角分布随光子场偏振的函数:以ns型光原子为例

Issoufou Arzika Alio, A. Aboubacar
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引用次数: 0

摘要

原子光电子的角分布给我们提供了关于被原子吸收的电磁辐射入射方向及其极化方向的不同方向上光电子场演化的信息。本文利用单心波函数理论研究了原子光电子的角分布随光子场偏振的变化规律,探讨了偏振对理论结果的影响。对氦原子进行了基于蒙特卡罗代码的GEANT4建模计算。计算是在高于原子电离阈值的低能量下进行的。通过解析计算得到的总光电离截面与利用GEANT4模型模拟计算得到的结果进行了比较。在本研究中考虑的能量范围的比较之后,观察到一个合理的一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Angular Distribution of Atomic Photoelectrons as a Function of Photon Field Polarization: Case of Ns-type Light Atoms
The angular distribution of the atomic photoelectrons gives us information on the evolution of the field of the photoelectrons in different directions concerning the incident direction of the electromagnetic radiation which is absorbed by the atom and its direction of polarization. Here, the angular distribution of atomic photoelectrons as a function of photon field polarization was studied theoretically using monocentric wave functions to investigate the influence of polarization on the theoretical results. A GEANT4 modeling calculation based on the Monte Carlo code was made on the helium atom. The calculations were performed at low energy above the atomic ionization threshold. The results obtained by analytical calculation for the total photoionization cross-section were compared with those obtained by a simulation calculation using GEANT4 modeling. A reasonable agreement was observed following this comparison for a range of energy considered in this study.
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