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Self-excited oscillation and synchronization of an on-fiber optomechanical cavity

机译:纤维机械腔的自激振荡和同步

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We study a fully on-fiber optomechanical cavity and characterize its performance as a sensor. The cavity is formed by patterning a suspended metallic mirror near the tip of an optical fiber and by introducing a static reflector inside the fiber. Optically induced self-excited oscillation (SEO) is observed above a threshold value of the injected laser power. The SEO phase can be synchronized by periodically modulating the optical power that is injected into the cavity. Noise properties of the system in the region of synchronization are investigated. Moreover,the spectrum is measured near different values of the modulation frequency, at which phase locking occurs. A universal behavior is revealed in the transition between the regions of phase locked and free running SEO.
机译:我们研究了完全有纤维的光学力学腔,并将其性能表征为传感器。 通过在光纤尖端附近的悬浮金属镜和通过在纤维内引入静态反射器来形成腔。 光学诱导的自激振荡(SEO)被观察到在注入的激光功率的阈值之上。 可以通过周期性地调制注入腔体的光功率来同步SEO相。 研究了系统中系统的噪声属性。 此外,频谱在调制频率的不同值附近测量,在该调制频率的不同值中发生锁相。 在锁定和自由运行SEO的阶段区域之间的过渡中揭示了普遍行为。

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