论文标题

微孔子和激光参数通过自我注射锁定定义

Microresonator and Laser Parameters Definition via Self-Injection Locking

论文作者

Shitikov, Artem E., Benderov, Oleg V., Kondratiev, Nikita M., Lobanov, Valery E., Rodin, Alexander V., Bilenko, Igor A.

论文摘要

自我注射锁定到高质量的小因子微孔子器上是各种最新光子应用的关键组成部分,包括紧凑的窄线宽激光器和微型泡沫源。为了获得此类设备的最佳构造,必须了解锁定模式的参数,这是一项艰巨的任务。我们根据自我注射锁定效果的基本原理开发并验证了一种原始技术,该技术允许确定微孔子模式的关键参数(质量因子,垂直索引)以及激光二极管参数。我们证明了该方法可以在不适用的传统方法中的光谱范围中使用,例如在MID-IR中。我们通过由晶体硅制成的高Q窃窃库模式微孔子稳定了2.64美元的激光二极管。使用详细技术,微孔子的质量因素被确定为$ 5 \ cdot10^8 $。

Self-injection locking to a high-quality-factor microresonator is a key component of various up-to-date photonic applications, including compact narrow-linewidth lasers and microcomb sources. For optimal construction of such devices it is necessary to know the parameters of the locking mode, which is a challenging task. We developed and verified experimentally an original technique based on the fundamentals of the self-injection locking effect, which allows determining the key parameters of the mode of the microresonator (quality factor, vertical index) as well as laser diode parameters. We demonstrated that this method can be used in the spectral ranges where conventional methods are not applicable, for example, in the mid-IR. We stabilized a 2.64 $μ$m laser diode by a high-Q whispering gallery mode microresonator made of crystalline silicon. Using the elaborated technique, the quality factor of the microresonator was determined to be $5\cdot10^8$.

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