论文标题
双激光自我注射锁定到集成的微孔子
Dual-laser self-injection locking to an integrated microresonator
论文作者
论文摘要
二极管激光自我注射锁定(SIL)对高质量因子谐振器的耳语画廊模式是一种广泛使用的激光线宽狭窄和高频噪声的方法。 SIL已经用于演示超低光子光子微波振荡器和孤子微重栓的生成,并具有广泛的可能应用。最新情况,仅使用一个激光证明SIL。但是,多频率和狭窄的激光源对现代电信系统,量子技术和微波光子学的需求很高。在这里,我们在实验中证明了两个多频激光二极管的双激光SIL,以与集成的Si $ _3 $ n $ _4 $微孔子器的不同模式。观察到了两个激光器的同时频谱崩溃,以及线宽变窄和高频噪声抑制,以及彼此之间两个磁场的强非线性相互作用。将两个激光器锁定到相同的模式会导致同时频率和相位稳定和连贯的输出添加。此外,我们提供了一个全面的双基理论,并研究了激光器对微孔子中非线性效应引起的彼此影响。
Diode laser self-injection locking (SIL) to a whispering gallery mode of a high quality factor resonator is a widely used method for laser linewidth narrowing and high-frequency noise suppression. SIL has already been used for the demonstration of ultra-low-noise photonic microwave oscillators and soliton microcomb generation and has a wide range of possible applications. Up to date, SIL was demonstrated only with a single laser. However, multi-frequency and narrow-linewidth laser sources are in high demand for modern telecommunication systems, quantum technologies, and microwave photonics. Here we experimentally demonstrate the dual-laser SIL of two multifrequency laser diodes to different modes of an integrated Si$_3$N$_4$ microresonator. Simultaneous spectrum collapse of both lasers, as well as linewidth narrowing and high-frequency noise suppression , as well as strong nonlinear interaction of the two fields with each other, are observed. Locking both lasers to the same mode results in a simultaneous frequency and phase stabilization and coherent addition of their outputs. Additionally, we provide a comprehensive dual-SIL theory and investigate the influence of lasers on each other caused by nonlinear effects in the microresonator.