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The effects of various approximations on electron-electron scattering calculations in QCLs

机译:各种近似对QCL中电子-电子散射计算的影响

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Quantum cascade lasers (QCLs) employ the mid- and far-infrared intersubband radiative transitions available in semiconducting heterostructures. Through the precise design and construction of these heterostructures the laser characteristics and output frequencies can be controlled. When fabricated, QCLs offer a lightweight and portable alternative to traditional laser systems which emit in this frequency range. The successful operation of these devices strongly depends on the effects of electron transport. Electron-electron scattering is an essential mechanism involved in electron transport and approximations are often made in finding the electron-electron scattering rate in order to simplify calculations. Results will be presented characterizing various effects which are sometimes ignored in calculating electron-electron scattering rates. These effects include state-blocking, electron screening, temperature dependence, as well as the inclusion of all possible transitions that can occur in three periods of the QCL active region. These effects will be presented in the context of several QCL active region designs, including those grown and fabricated at the University of Massachusetts Lowell Photonics Center.
机译:量子级联激光器(QCL)采用半导体异质结构中可用的中红外和远红外子带间辐射跃迁。通过这些异质结构的精确设计和构造,可以控制激光特性和输出频率。在制造时,QCL提供了在该频率范围内发射的传统激光系统的轻巧便携式选择。这些设备的成功运行很大程度上取决于电子传输的影响。电子-电子散射是电子传输中必不可少的机制,为了简化计算,经常在寻找电子-电子散射速率时进行近似。将给出表征各种效应的结果,这些效应有时在计算电子-电子散射速率时会被忽略。这些效应包括状态阻断,电子屏蔽,温度依赖性,以及包括可能在QCL有源区的三个周期中发生的所有可能的跃迁。这些影响将在几种QCL有源区设计的背景下呈现,包括那些在马萨诸塞州洛厄尔大学光子学中心生长和制造的设计。

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