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Feedback control of ultra-high-Q microcavities: application to micro-Raman lasers and microparametric oscillators

机译:超高Q微腔的反馈控制:在微拉曼激光器和微参数振荡器中的应用

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摘要

We demonstrate locking of an on-chip, high-Q toroidal-cavity to a pump laser using two, distinct methods: coupled power stabilization and wavelength locking of pump laser to the microcavity. In addition to improvements in operation of previously demonstrated micro-Raman and micro-OPO lasers, these techniques have enabled observation of a continuous, cascaded nonlinear process in which photons generated by optical parametric oscillations (OPO) function as a pump for Raman lasing. Dynamical behavior of the feedback control systems is also shown including the interplay between the control loop and the thermal nonlinearity. The demonstrated stabilization loop is essential for studying generation of nonclassical states using a microcavity optical parametric oscillator.
机译:我们演示了使用两种不同的方法将片上高Q环形腔锁定到泵浦激光器:耦合功率稳定和将泵浦激光器波长锁定到微腔。除了改进先前展示的微拉曼和微OPO激光器的操作之外,这些技术还使得能够观察到连续的级联非线性过程,其中光学参量振荡(OPO)产生的光子充当拉曼激射的泵浦。还显示了反馈控制系统的动态行为,包括控制回路和热非线性之间的相互作用。对于使用微腔光学参量振荡器研究非经典状态的生成,已证明的稳定环至关重要。

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