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Projection-reduction method applied to deriving non-linear optical conductivity for an electron-impurity system

机译:用于电子杂质系统的非线性光学导率的投影缩减方法

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The projection-reduction method introduced by the present authors is known to give a validated theory for optical transitions in the systems of electrons interacting with phonons. In this work, using this method, we derive the linear and first order nonlinear optical conductivites for an electron-impurity system and examine whether the expressions faithfully satisfy the quantum mechanical philosophy, in the same way as for the electron-phonon systems. The result shows that the Fermi distribution function for electrons, energy denominators, and electron-impurity coupling factors are contained properly in organized manners along with absorption of photons for each electron transition process in the final expressions. Furthermore, the result is shown to be represented properly by schematic diagrams, as in the formulation of electron-phonon interaction. Therefore, in conclusion, we claim that this method can be applied in modeling optical transitions of electrons interacting with both impurities and phonons.
机译:已知由本发明人介绍的投影减少方法为电子与声子相互作用的系统中的光学跃迁提供了经验证的理论。在这项工作中,使用这种方法,我们推导了电子杂质系统的线性和一阶非线性光学导体,并以与电子声子系统相同的方式检查表达式是否忠实地满足了量子力学原理。结果表明,在最终表达式中,电子,能量分母和电子杂质耦合因子的费米分布函数以适当的方式适当地包含,并且对于每个电子跃迁过程都吸收了光子。此外,与电子-声子相互作用的公式化一样,结果显示为用示意图正确表示。因此,总而言之,我们声称该方法可用于模拟与杂质和声子相互作用的电子的光学跃迁。

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