Zhou Yue-Ru, Zhang Qing-Feng, Liu Fei-Fei, Han Yu-Hong, Gao Yong-Pan, Fan Ling, Zhang Ru, Cao Cong
Opt Express. 2024 Jan 15;32(2):2786-2803. doi: 10.1364/OE.512280.
Here, a scheme for a controllable nonreciprocal phonon laser is proposed in a hybrid photonic molecule system consisting of a whispering-gallery mode (WGM) optomechanical resonator and a χ-nonlinear WGM resonator, by directionally quantum squeezing one of two coupled resonator modes. The directional quantum squeezing results in a chiral photon interaction between the resonators and a frequency shift of the squeezed resonator mode with respect to the unsqueezed bare mode. We show that the directional quantum squeezing can modify the effective optomechanical coupling in the optomechanical resonator, and analyze the impacts of driving direction and squeezing extent on the phonon laser action in detail. Our analytical and numerical results indicate that the controllable nonreciprocal phonon laser action can be effectively realized in this system. The proposed scheme uses an all-optical and chip-compatible approach without spinning resonators, which may be more beneficial for integrating and packaging of the system on a chip. Our proposal may provide a new route to realize integratable phonon devices for on-chip nonreciprocal phonon manipulations, which may be used in chiral quantum acoustics, topological phononics, and acoustical information processing.
在此,我们提出了一种在由回音壁模式(WGM)光机械谐振器和χ非线性WGM谐振器组成的混合光子分子系统中实现可控非互易声子激光器的方案,通过对两个耦合谐振器模式之一进行定向量子压缩来实现。定向量子压缩导致谐振器之间的手性光子相互作用以及压缩谐振器模式相对于未压缩裸模式的频率偏移。我们表明,定向量子压缩可以改变光机械谐振器中的有效光机械耦合,并详细分析驱动方向和压缩程度对声子激光作用的影响。我们的分析和数值结果表明,在该系统中可以有效地实现可控非互易声子激光作用。所提出的方案采用全光且与芯片兼容的方法,无需旋转谐振器,这可能更有利于系统在芯片上的集成和封装。我们的提议可能为实现用于片上非互易声子操纵的可集成声子器件提供一条新途径,其可用于手性量子声学、拓扑声子学和声学信息处理。