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通过连续统中的束缚态实现超参数振荡。

Hyperparametric Oscillation via Bound States in the Continuum.

机构信息

Department of Microtechnology and Nanoscience, Chalmers University of Technology SE-41296 Gothenburg, Sweden.

出版信息

Phys Rev Lett. 2023 Mar 3;130(9):093801. doi: 10.1103/PhysRevLett.130.093801.

Abstract

Optical hyperparametric oscillation based on the third-order nonlinearity is one of the most significant mechanisms to generate coherent electromagnetic radiation and produce quantum states of light. Advances in dispersion-engineered high-Q microresonators allow for generating signal waves far from the pump and decrease the oscillation power threshold to submilliwatt levels. However, the pump-to-signal conversion efficiency and absolute signal power are low, fundamentally limited by parasitic mode competition and attainable cavity intrinsic Q to coupling Q ratio, i.e., Q_{i}/Q_{c}. Here, we use Friedrich-Wintgen bound states in the continuum (BICs) to overcome the physical challenges in an integrated microresonator-waveguide system. As a result, on-chip coherent hyperparametric oscillation is generated in BICs with unprecedented conversion efficiency and absolute signal power. This work not only opens a path to generate high-power and efficient continuous-wave electromagnetic radiation in Kerr nonlinear media but also enhances the understanding of a microresonator-waveguide system-an elementary unit of modern photonics.

摘要

基于三阶非线性的光超参数振荡是产生相干电磁辐射和产生光量子态的最主要机制之一。经过色散工程设计的高 Q 值微谐振器的进步,使得能够产生远离泵浦的信号波,并将振荡功率阈值降低到毫瓦以下。然而,泵浦到信号的转换效率和绝对信号功率仍然较低,这主要受到寄生模式竞争和可实现的腔固有 Q 值与耦合 Q 值之比(即 Q_{i}/Q_{c})的限制。在这里,我们使用弗里德里希-温特根连续体中的束缚态(BICs)来克服集成微谐振器-波导系统中的物理挑战。结果,在前所未有的转换效率和绝对信号功率下,在 BICs 中产生了片上相干超参数振荡。这项工作不仅为在 Kerr 非线性介质中产生高功率和高效的连续电磁辐射开辟了道路,而且还增强了对微谐振器-波导系统的理解,这是现代光子学的基本单元。

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