论文标题

连续体中具有光子结合状态的腔光力学

Cavity Optomechanics with Photonic Bound States in the Continuum

论文作者

Fitzgerald, Jamie M., Manjeshwar, Sushanth Kini, Wieczorek, Witlef, Tassin, Philippe

论文摘要

我们提出了一个由两个光子晶体构建的多功能,自由空间的腔机械平台,其中一种是自由悬浮的,设计的是形成小于一个波长长的微博。该空腔具有连续体中一系列光子结合状态,原则上,它可以永远捕获光,并且可以与evaneScent耦合一起使用,以实现各种类型的光力耦合,例如线性或二次耦合,例如分散性或散发性类型的偶联,通过调谐光子晶体晶体晶体模式和载体长度。至关重要的是,该平台允许在超局部单光子耦合方向上具有超过统一性的量子协同度,超过了在非固定侧带方案中常规的基于Fabry-Perot的腔型光学机械设备的性能。这个概念上新颖的平台允许探索光学相互作用的新机制,尤其是在脉冲和单光学光学机械框架中。

We propose a versatile, free-space cavity optomechanics platform built from two photonic crystal membranes, one of which is freely suspended, and designed to form a microcavity less than one wavelength long. This cavity features a series of photonic bound states in the continuum that, in principle, trap light forever and can be favorably used together with evanescent coupling for realizing various types of optomechanical couplings, such as linear or quadratic coupling of either dispersive or dissipative type, by tuning the photonic crystal patterning and cavity length. Crucially, this platform allows for a quantum cooperativity exceeding unity in the ultrastrong single-photon coupling regime, surpassing the performance of conventional Fabry-Perot-based cavity optomechanical devices in the non-resolved sideband regime. This conceptually novel platform allows for exploring new regimes of the optomechanical interaction, in particular in the framework of pulsed and single-photon optomechanics.

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