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Dynamical regimes and intracavity propagation delay in external cavity semiconductor diode lasers

机译:外腔半导体二极管激光器的动力学机制和腔内传播延迟

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Intracavity propagation delay, a delay introduced by a semiconductor diode laser, is found to significantly influence synchronization of multiple semiconductor diode lasers, operated either in stable or in chaotic regime. Two diode lasers coupled in unidirectional scheme is considered in this numerical study. A diode laser subjected to an optical feedback, also called an external cavity diode laser, acts as the transmitter laser (TL). A solitary diode laser acts as the receiver laser (RL). The optical output of the TL is coupled to the RL and laser operating parameters are optimized to achieve synchronization in their output intensities. The time-of-flightbetween the TL and RL introduces an intercavity time delay in the dynamics of RL. In addition to this, an intracavity propagation delay arises as the TLa€?s field propagated within the RL. This intracavity propagation delay is evaluated by cross-correlation analysis between the output intensities of the lasers. The intracavity propagation delay is found to increase as the external cavity feedback rate of TL is increased, while an increment in the injection rate between the two lasers resulted in a reduction of intracavity propagation delay.
机译:腔内传播延迟(由半导体二极管激光器引入的延迟)被发现会显着影响以稳定或混沌状态工作的多个半导体二极管激光器的同步。数值研究考虑了两个单向耦合的二极管激光器。受到光反馈的二极管激光器(也称为外腔二极管激光器)充当发射器激光器(TL)。孤立二极管激光器用作接收器激光器(RL)。 TL的光输出与RL耦合,并且优化了激光操作参数以实现其输出强度的同步。 TL和RL之间的飞行时间在RL动力学中引入了腔间时间延迟。除此之外,随着TLa场在RL内的传播,会产生腔内传播延迟。该腔内传播延迟通过激光器的输出强度之间的互相关分析来评估。发现腔内传播延迟随着TL的外腔反馈速率的增加而增加,而两个激光器之间的注入速率的增加导致腔内传播延迟的减小。

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