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首页> 外文期刊>Optics Letters >Bifurcation to chaotic low-frequency fluctuations in a laser diode with phase-conjugate feedback
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Bifurcation to chaotic low-frequency fluctuations in a laser diode with phase-conjugate feedback

机译:具有相位共轭反馈的激光二极管的分叉到混沌低频波动

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摘要

We unveil theoretically the bifurcations to chaotic low-frequency fluctuations (LFF) in a laser diode with phase-conjugate feedback (PCF). LFF occur from a chaotic itinerancy among destabilized limit-cycle attractors that correspond to the external-cavity modes (ECMs) of the PCF laser system and with a directional motion toward a self-pulsating dynamics of increasing frequency and larger output power. When increasing the feedback strength, the frequency of the fast-pulsing dynamics changes about a multiple of the external-cavity frequency, which is a unique feature of LFF in a laser diode with PCF.
机译:我们从理论上揭示了具有相位共轭反馈(PCF)的激光二极管中混沌低频波动(LFF)的分歧。 LFF源自不稳定的极限周期吸引子之间的混沌迭代,这些吸引子与PCF激光系统的外腔模式(ECM)相对应,并且具有朝着频率不断增加且输出功率更大的自脉冲动力学方向运动。当增加反馈强度时,快速脉冲动力学的频率大约是外腔频率的倍数变化,这是带有PCF的激光二极管中LFF的独特功能。

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