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首页> 外文期刊>Journal of Lightwave Technology >All-optical bistable switching dynamics in 1.55-/spl mu/m two-segment strained multiquantum-well distributed-feedback lasers
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All-optical bistable switching dynamics in 1.55-/spl mu/m two-segment strained multiquantum-well distributed-feedback lasers

机译:1.55- / splμu/ m两段应变多量子阱分布式反馈激光器中的全光双稳态开关动力学

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摘要

All-optical bistable switching dynamics of 1.55-/spl mu/m two-segment strained multiquantum-well (MQW) distributed-feedback (DFB) lasers were systematically studied both experimentally and theoretically. Some fundamental optical functionalities, including all-optical set-reset (flip-flop) operations, were demonstrated. The switching responses of these bistable lasers were studied, for the first time, with optical injection from a single-mode DFB laser, indicating that the switching dynamics based on gain quenching and absorption saturation are inherently different. A theoretical model including optical injection was developed to study these all-optical bistable switching characteristics in segmented bistable lasers. It was found that the nonuniform distribution of the photon density in the bistable laser cavity induced by optical injection was essential to perform the time-domain switching operations. Simulations showed a good agreement with experimental observations and indicated design improvements. Although the switching responses in the range of tens of picoseconds can be obtained with these bistable lasers, the maximum repetition frequency of the bistable systems would still be limited to the hundreds of megahertz due to the slow carrier recovery time (5 ns) of the lasers.
机译:通过实验和理论研究了1.55- / splμu/ m两段应变多量子阱(MQW)分布式反馈(DFB)激光器的全光双稳态开关动力学。演示了一些基本的光学功能,包括全光置位复位(触发器)操作。这些双稳态激光器的开关响应首次通过单模DFB激光器的光注入进行了研究,表明基于增益猝灭和吸收饱和的开关动力学本质上是不同的。建立了包括光学注入在内的理论模型,以研究分段双稳态激光器中的这些全光学双稳态开关特性。已经发现,由光注入引起的双稳态激光腔中光子密度的不均匀分布对于执行时域切换操作至关重要。仿真显示与实验观察结果非常吻合,并表明了设计上的改进。尽管使用这些双稳态激光器可以获得数十皮秒的开关响应,但是由于激光器的慢载流子恢复时间(5 ns),双稳态系统的最大重复频率仍将限制在数百兆赫兹。

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