论文标题

取消光热诱导的光谐振器中的不稳定性

Cancellation of photothermally induced instability in an optical resonator

论文作者

Qin, Jiayi, Guccione, Giovanni, Ma, Jinyong, Gu, Chenyue, Lecamwasam, Ruvi, Buchler, Ben C., Lam, Ping Koy

论文摘要

光学系统通常会受到光场对系统动力学的延迟响应引起的参数不稳定性。在某些情况下,寄生光热效应通过添加新的相互作用动力学加剧了不稳定性。这可能会导致参数增益的叛乱或放大,从而进一步破坏该系统的稳定。在本文中,我们表明可以修改光学腔的光热特性,以减轻甚至完全取消光力学的不稳定性。通过反转光热相互作用以使其与辐射压力配合,我们可以控制系统动力学,以完全平衡稳定的平衡点。我们的研究为光学控制和精确的计量应用提供了反馈解决方案,特别是在高敏性共振系​​统中特别容易受到寄生光热效应的影响,例如我们的宏观光学悬浮设置的测试用例。这种被动稳定技术有益于改善系统性能受光热动力学的限制,在光学,光学机械,光子学和激光技术的广泛领域。

Optical systems are often subject to parametric instability caused by the delayed response of the optical field to the system dynamics. In some cases, parasitic photothermal effects aggravate the instability by adding new interaction dynamics. This may lead to the possible insurgence or amplification of parametric gain that can further destabilize the system. In this paper, we show that the photothermal properties of an optomechanical cavity can be modified to mitigate or even completely cancel optomechanical instability. By inverting the sign of the photothermal interaction to let it cooperate with radiation pressure, we achieve control of the system dynamics to be fully balanced around a stable equilibrium point. Our study provides a feedback solution for optical control and precise metrological applications, specifically in high-sensitivity resonating systems that are particularly susceptible to parasitic photothermal effects, such as our test case of a macroscopic optical levitation setup. This passive stabilization technique is beneficial for improving system performance limited by photothermal dynamics in broad areas of optics, optomechanics, photonics, and laser technologies.

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