量子级联激光器中的热电子

S. Luryi
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引用次数: 1

摘要

我们发展了一种理论,描述了基于量子阱中子带间跃迁的激光器的操作。该理论结合了子带间线形和光学增益的第一性原理描述以及载流子加热的动力学模型。该理论与现有实验数据一致,为改进室温高输出功率激光器的设计提供了新的途径。在低载流子浓度下,即使在量子阱子带之间没有总体居群反转的情况下,也有可能在室温下获得正值的增益。对于较高(但仍然适中)的浓度,该理论预测了输出波长对泵浦电流的特殊依赖,包括激光波长在两个稳定值之间“数字”切换的状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hot electrons in quantum cascade lasers
We have developed a theory describing the operation of lasers based on intersubband transitions in a quantum well. The theory combines a first-principles description of the intersubband lineshape and the optical gain with kinetic models for carrier heating. The theory is consistent with the experimental data available and suggests new ways of improving the laser design for room temperature operation with high output power. At low carrier concentrations, it is possible to achieve positive values of the gain at room temperature even in the absence of an overall population inversion between quantum well subbands. For higher (but still moderate) concentrations, the theory predicts a peculiar dependence of the output wavelength on the pump current, including a regime where the lasing wavelength switches "digitally" between two stable values.
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