Bloch gain in a quantum cascade laser

H. Willenberg, G. Scalari, G. Dohler, J. Faist
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引用次数: 1

Abstract

We present a microscopic model, based on a density matrix formalism, which unifies the apparently quite different gain mechanisms in intersubband transitions: the inversion gain of a quantum cascade laser and the Bloch gain in a periodic superlattice. The theory also provides an expression for the spontaneous emission in intersubband transitions, which accounts for the temperature-dependent asymmetry of measured luminescence spectra. While the luminescence profile is hardly altered, the peak gain position depends critically on the ratio of populations. Thus, the degree of population inversion is accessible by simultaneous observation of both signals. For these measurements, whispering gallery quantum cascade laser are particularly suitable as scattered laser light and luminescence are of comparable strength over a wide range of injected currents.
量子级联激光器中的布洛赫增益
我们提出了一个基于密度矩阵形式的微观模型,它统一了子带间跃迁中明显不同的增益机制:量子级联激光器的反转增益和周期超晶格中的布洛赫增益。该理论还提供了子带间跃迁中自发发射的表达式,这解释了测量的发光光谱的温度依赖的不对称性。虽然发光轮廓几乎没有改变,但峰值增益位置主要取决于种群的比例。因此,通过同时观察两个信号,可以获得总体反转的程度。对于这些测量,低语廊量子级联激光器特别适合,因为散射激光和发光在大范围注入电流中具有相当的强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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