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Theoretical and experimental analysis of unidirectionality of asymmetrically coupled semiconductor ring or disk lasers

机译:非对称耦合半导体环形或盘形激光器单向性的理论和实验分析

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We present analytical, numerical and experimental results about the unidirectional behaviour of semiconductor ring or disk lasers in which the coupling from the clockwise (CW) mode to the counterclockwise (CCW) mode is different from the coupling from the counterclockwise to the clockwise mode. The theoretical and numerical results show different regimes, depending on the gain suppression in the active layer. At very low power, the ratio of the powers of the CW and CCW modes depends mainly on the ratio of the coupling constants, while at high power gain suppression is dominant and the ratio of the powers depends on the ratio of the gain suppression and the weakest coupling coefficient. Our analytical expressions for the unidirectionality are in excellent agreement with numerical results obtained using coupled rate equations. Some experimental results are given for a microdisk laser coupled to a bus waveguide, on one side of which an almost 100% reflecting Bragg grating is designed.
机译:我们提供有关半导体环形或盘状激光器的单向行为的分析,数值和实验结果,其中从顺时针(CW)模式到逆时针(CCW)模式的耦合不同于从逆时针到顺时针模式的耦合。理论和数值结果显示了不同的机制,具体取决于有源层中的增益抑制。在非常低的功率下,CW和CCW模式的功率之比主要取决于耦合常数的比,而在高功率下,增益抑制是主要的,功率之比取决于增益抑制与功率的比。最弱的耦合系数。我们对单向性的分析表达式与使用耦合速率方程获得的数值结果非常吻合。对于耦合到总线波导的微盘激光器,给出了一些实验结果,在其一侧设计了几乎100%反射的布拉格光栅。

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