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Optical bistability in side-mode injection locked dual-mode Fabry-Pérot laser diode

机译:侧模注入锁定双模Fabry-Pérot激光二极管的光学双稳性

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In this paper, optical bistability characteristics are demonstrated experimentally based on a dual-mode laser system comprising a multi-mode Fabry-Pérot laser diode (MMFP-LD) and a built-in feedback cavity formed by a fiber facet. The results show that two lasing modes with frequency separation of ~0.58 THz and comparable peak powers can be achieved by judicious adjustment of the bias current and the operating temperature of the laser chip, which has a peak fluctuation of less than ~1?dBm over a measurement period of one hour. A combination of appropriate external injection power and wavelength detuning can result in remarkable optical bistability in two oscillation modes, in which the resulting contrast ratio between the unlocked and locked states can be up to 30 dB, and the corresponding hysteresis loop width can be changed by controlling the side-mode injection power and the wavelength detuning.
机译:在本文中,基于双模激光系统(包括多模Fabry-Pérot激光二极管(MMFP-LD))和由光纤小面形成的内置反馈腔,通过实验演示了光学双稳态特性。结果表明,通过适当调节激光芯片的偏置电流和工作温度,可以实现两种频率间隔约为0.58 THz且具有相当峰值功率的激光模式,其峰值波动在整个过程中小于〜1?dBm。测量时间为一小时。适当的外部注入功率和波长失谐的组合可以在两种振荡模式下产生显着的光学双稳态,在这种模式下,解锁状态和锁定状态之间的对比度最高可以达到30 dB,并且可以通过以下方式更改相应的磁滞回线宽度:控制侧模注入功率和波长失谐。

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