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Self-induced transparency mode locking, and area theorem

机译:自感应透明模式锁定和面积定理

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摘要

Self-induced transparency mode locking (or coherent mode locking, CML), which is based on intracavity self-induced transparency soliton dynamics, potentially allows achievement of nearly single-cycle intracavity pulse durations, much below the phase relaxation time T-2 in a laser which, despite having great promise, has not yet been realized experimentally. We develop a diagram technique which allows us to predict the main features of CML regimes in a generic two-section laser far from the single-cycle limit. We show that CML can arise directly at the first laser threshold if the phase relaxation time is large enough. Furthermore, we discuss the stability of the corresponding mapping. We also predict the existence of "super-CML regimes," with a pulse coupled to several Rabi oscillations in the nonlinear medium. (C) 2016 Optical Society of America
机译:基于腔内自感应透明孤子动力学的自感应透明模式锁定(或相干模式锁定,CML)有可能实现接近单周期的腔内脉冲持续时间,远低于相位弛豫时间T-2。尽管前景广阔,但仍未通过实验实现。我们开发了一种图表技术,使我们能够预测通用的两段式激光器中CML方案的主要特征,而远未达到单周期极限。我们证明,如果相位弛豫时间足够大,则CML可以直接在第一个激光阈值处出现。此外,我们讨论了相应映射的稳定性。我们还预测了“超级CML机制”的存在,其中脉冲耦合到非线性介质中的多个Rabi振荡。 (C)2016美国眼镜学会

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