Room Temperature Optical Nonlinearities in GaAs Multiple Quantum Wells

D. A. Miller, D. S. Cnemla, A. Gossard, P. Smith
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Abstract

Progress towards practical all-optical switching and signal processing devices depends crucially on finding suitable nonlinear materials. Consequently, various workers have explored so-called 'dynamic' nonlinear optical effects in semiconductors(1) in which the optical properties change as a result of real excitation of the material. Semiconductors are particularly attractive for fabrication as small devices. Unfortunately, while some of these effects should persist to room temperature, one of the most attractive, saturation of free exciton resonances(2) is basically limited to low temperatures in conventional semiconductors because of thermal broadening.
GaAs多量子阱的室温光学非线性
实用的全光开关和信号处理器件的进展关键取决于找到合适的非线性材料。因此,各种工作者已经探索了半导体中所谓的“动态”非线性光学效应(1),其中由于材料的实际激发,光学特性发生了变化。半导体在制造小型器件方面尤其具有吸引力。不幸的是,虽然这些效应中的一些应该持续到室温,但最吸引人的是,在传统半导体中,由于热展宽,自由激子共振的饱和(2)基本上仅限于低温。
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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