Optical Phase Conjugation Using Four-Wave Mixing in Laser Diodes Subject to Strong Probe Injection Power

Y. Hong, J.M. Tang, K. Shore
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Abstract

Optical phase conjugation through nearly degenerate four-wave mixing (NDFWM) in semiconductor lasers has attracted considerable attention in recent years since being first demonstrated by Nakajima and Frey[ 1 ]. Such interest arises due to the very high conjugate reflectivity of order 30-40dB which can be achieved owing to the amplifying effect of the semiconductor gain medium and cavity enhancement of mixing process. However, most previous experimental and theoretical work has placed emphasis on the weak signal case, where the injection signal acts only as a small perturbation of free-running laser diode. It is only very recently that a theoretical analysis of NDFWM in a semiconductor laser subject to strong probe injection power has been presented[2].
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强探针注入功率下激光二极管的四波混频光学相位共轭
自Nakajima和Frey[1]首次证明半导体激光器中通过近简并四波混频(NDFWM)实现光学相位共轭以来,近年来引起了相当大的关注。由于半导体增益介质的放大效应和混合过程的腔体增强,可以实现30-40dB数量级的极高共轭反射率,这引起了人们的兴趣。然而,以往的实验和理论工作大多侧重于弱信号情况,其中注入信号仅作为自由运行的激光二极管的小扰动。直到最近,才对半导体激光器在强探针注入功率作用下的NDFWM进行了理论分析[2]。
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