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Electron induced scattering from germane

机译:来自GEDANE的电子探测散射

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摘要

This article accounts for an extensive investigation of electron scattering with germane molecule over a wide energy range pertinent to various plasma processes. Efforts have been made to present a complete dataset of cross sections for various electron scattering processes. Such datasets are required for the plasma modeling community. Moreover, literature survey indicates that the cross-section database for electron-germane collision is fragmentary. To overcome this, we have calculated the differential elastic, total, electronic excitation, differential rotation excitation, and momentum transfer cross sections. The rate coefficients in the temperature range of 100-10,000 K are also reported for this molecule. Two quantum mechanical approaches are implemented to accomplish this task over an energy range from 0.5 to 5000 eV. They are ab initio R-matrix method at low-incident energies and the spherical complex optical potential formalism from intermediate to high energies. The present cross- section exhibits reasonable agreement with the previously available data found in the literature.
机译:本文占与各种等离子体工艺相关的宽能量范围内具有锗醛分子的电子散射的广泛研究。已经努力为各种电子散射过程提供横截面的完整数据集。等离子体建模社区需要此类数据集。此外,文献调查表明电子缘肠碰撞的横截面数据库是零碎的。为了克服这一点,我们已经计算了差动弹性,总,电子励磁,差动旋转励磁和动量转移横截面。还报道了该分子的100-10,000k的温度范围内的速率系数。实施了两种量子机械方法以在0.5至5000eV的能量范围内完成该任务。它们是低入射能量的AB Initio R-Matrix方法,以及来自中间到高能的球面复杂的光学潜在形式。目前的横截面与文献中发现的以前可用的数据表现出合理的协议。

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