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Density matrix theory of transport and gain in quantum cascade lasers in a magnetic field

机译:磁场中量子级联激光器中传输和增益的密度矩阵理论

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摘要

A density matrix theory of electron transport and optical gain in quantum cascade lasers in an external magnetic field is formulated. Starting from a general quantum kinetic treatment, we describe the intraperiod and interperiod electron dynamics at the non-Markovian, Markovian, and Boltzmann approximation levels. Interactions of electrons with longitudinal optical phonons and classical light fields are included in the present description. The non-Markovian calculation for a prototype structure reveals a significantly different gain spectra in terms of linewidth and additional polaronic features in comparison to the Markovian and Boltzmann ones. Despite strongly controversial interpretations of the origin of the transport processes in the non-Markovian or Markovian and the Boltzmann approaches, they yield comparable values of the current densities.
机译:建立了量子级联激光器在外部磁场中电子传输和光增益的密度矩阵理论。从一般的量子动力学处理开始,我们描述了非马氏,马氏和玻尔兹曼近似水平下的周期内和周期内电子动力学。电子与纵向光学声子和经典光场的相互作用包括在本说明书中。对于原型结构的非马尔可夫计算显示出,与马尔可夫和玻耳兹曼的相比,在线宽和其他极化特性方面,增益谱有显着不同。尽管在非马尔可夫方法或马尔可夫方法和玻尔兹曼方法中对输运过程的起源进行了有争议的解释,但它们得出的电流密度值相当。

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