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注入锁定单模量子点激光器中的可激发相位滑移

Excitable phase slips in an injection-locked single-mode quantum-dot laser.

作者信息

Kelleher B, Goulding D, Hegarty S P, Huyet G, Cong Ding-Yi, Martinez A, Lemaître A, Ramdane A, Fischer M, Gerschütz F, Koeth J

机构信息

Tyndall National Institute, Lee Maltings, Cork, Ireland.

出版信息

Opt Lett. 2009 Feb 15;34(4):440-2. doi: 10.1364/ol.34.000440.

Abstract

An experimental study of the dynamics of a single-mode quantum-dot semiconductor laser undergoing optical injection is described for the first time, to our knowledge. In particular, the first observation of excitable pulses near the locking boundaries for both positive and negative detuning is reported, indicating locking via a saddle-node bifurcation for both signs of the detuning. The phase evolution of the slave electric-field during pulsing was measured and confirmed that the pulses result from 2pi phase slips. The interpulse-time statistics were analyzed, and a Kramers-like distribution was obtained.

摘要

据我们所知,首次描述了对单模量子点半导体激光器在光注入下动力学的实验研究。特别是,报告了在正失谐和负失谐情况下锁定边界附近可激发脉冲的首次观测结果,表明对于两种失谐符号均通过鞍结分岔实现锁定。测量了脉冲期间从激光器电场的相位演化,并证实脉冲是由2π相位滑移产生的。分析了脉冲间时间统计数据,并获得了类似克莱默斯分布的结果。

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