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Frequency-Pushing Effect in Single-Mode Diode Laser Subject to External Dual-Beam Injection

机译:外部双光束注入对单模二极管激光器的推频效应

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摘要

The frequency-pushing effect in single-mode diode lasers subject to single-beam injection and dual-beam injection is studied experimentally. The physical process of the frequency-pushing effect has been analyzed in detail using a medium-gain model in a single-beam injection system. A “pushed to lock” phenomenon has been observed in dual-beam injection system and has also been analyzed using the medium-gain model. This model can also be used to explain the maximum of conversion efficiency in an injection-locked frequency convertor. First, we produce a conventional mapping of nonlinear dynamic regions, including stable locking, period doubling, chaos, undamped relaxation oscillations, and bistability, as functions of the detuning frequency and injection ratio in single-beam injection system. Then, a pushed stable locking range is observed when two masters are injected simultaneously. The direction of pushing is towards negative detuning frequencies and low injection ratios, which allows a larger detuning frequency and lower injection ratio in choosing the lasers used as pump source in injection-locked frequency convertor.
机译:实验研究了单光束注入和双光束注入的单模二极管激光器的推压效果。在单束注入系统中,使用中等增益模型详细分析了频率推动效应的物理过程。在双光束注入系统中已经观察到“推入锁定”现象,并且还使用中增益模型进行了分析。该模型还可用于解释注入锁定式变频器的最大转换效率。首先,我们生成了非线性动态区域的常规映射,包括稳定锁定,周期加倍,混沌,无阻尼松弛振动和双稳态,这是单波束注入系统中失谐频率和注入比率的函数。然后,当同时注入两个主泵时,观察到推入的稳定锁定范围。推动的方向朝向负失谐频率和低注入比,这在选择注入锁定变频器中用作泵浦光源的激光器时允许较大的失谐频率和较低的注入比。

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