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Micro-cavity semiconductor lasers with controlled spontaneous emission

机译:具有可控自发发射的微腔半导体激光器

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摘要

The principle and applications of quantum electrodynamics in microcavity semi-conductor lasers are reviewed. The coupling efficiency of spontaneous emission into a lasing mode and the spontaneous lifetime are modified by various microcavity structures. As a consequence of the increased coupling efficiency, those microcavity semi-conductor lasers are expected to feature a low threshold current, high quantum efficiency and broad modulation bandwidth. One remarkable result of the increased coupling efficiency is ‘lasing without inversion’. The other is ‘intensity squeezing at any pump
机译:综述了量子电动力学在微腔半导体激光器中的原理和应用。自发发射到激光模式的耦合效率和自发寿命受到各种微腔结构的改变。由于耦合效率的提高,这些微腔半导体激光器有望具有低阈值电流、高量子效率和宽调制带宽等特点。耦合效率提高的一个显著结果是“无反转激光”。另一个是“任何泵的强度挤压”

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