论文标题

QCL动力学:均值范围外接近的热效应和速率方程

QCL dynamics: thermal effects and rate equations beyond mean-field approach

论文作者

Vrubel, Ivan I., Cherotchenko, Evgeniia D., Miskovets, Georgii D., Dudelev, Vladislav V., Sokolovskii, Grigorii S.

论文摘要

当需要对任何激光应用做出定量预测时,对热效应的正确核算始终是一个挑战。在诸如量子级联激光器温度的复杂设备中,温度强烈影响操作条件,以防止达到CW模式以及脉冲状态下的有效激光。速率方程是建模激光动力学的最有效和最简单的方法。但是,常规方法在平均场近似值下运行,考虑到人口水平有限的数量,将获得的结果推广到无限的级联数量,并且不考虑加热。在这项工作中,我们通过添加自加热描述并将其应用于QCL动力学的计算来修改常规的三级速率方程方法。结果,我们显示温度如何影响阈值特征和堆积时间,并包括QCL描述的电子方面。

The correct accounting for thermal effects is always a challenge when one needs to make quantitative predictions for any laser applications. In such complicated devices as quantum cascade lasers temperature strongly affects the operational conditions preventing reaching the CW mode as well as efficient lasing in pulsed regime. Rate equations are the most effective and simple way to model laser dynamics. However, the conventional approaches operate under the mean-field approximation, considering finite number of population levels, generalizing the obtained results to the infinite number of cascades, and do not take heating into account. In this work we modify the conventional three-level rate equation approach by adding self-heating description and applying it to the calculation of QCL dynamics. As a result we show how temperature affects the threshold characteristics and build-up time and include electronic aspects to the description of QCL.

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