Spirin Vasily V, Bueno Escobedo José L, Korobko Dmitry A, Mégret Patrice, Fotiadi Andrei A
Opt Express. 2020 Jan 6;28(1):478-484. doi: 10.1364/OE.28.000478.
Self-injection locking to an external fiber cavity is an efficient technique enabling drastic linewidth narrowing and self-stabilization of semiconductor lasers. The main drawback of this technique is its high sensitivity to fluctuations of the configuration parameters and surroundings. In the proposed laser configuration, to the best our knowledge, for the first time the self-injection locking mechanism is used in conjunction with a simple active optoelectronic feedback, ensuring stable mode-hopping free laser operation in a single longitudinal mode. Locking to 4-m length fiber resonator causes a drastic narrowing of the DFB laser linewidth down to 2.8 kHz and a reduction of the laser phase noise by three orders of magnitude. We have explored key features of the laser dynamics with and without active feedback, revealing stability and tunability of the laser linewidth as an additional benefit of the proposed technique.
自注入锁定到外部光纤腔是一种有效的技术,可实现半导体激光器的线宽大幅变窄和自稳定。该技术的主要缺点是对配置参数和周围环境的波动高度敏感。在所提出的激光器配置中,据我们所知,自注入锁定机制首次与简单的有源光电反馈结合使用,确保在单纵模下实现稳定的无模式跳变激光运行。锁定到4米长的光纤谐振器会使分布反馈(DFB)激光器的线宽急剧变窄至2.8千赫兹,并使激光相位噪声降低三个数量级。我们研究了有无有源反馈时激光动力学的关键特性,揭示了激光线宽的稳定性和可调性是所提出技术的另一个优点。