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光子腔对纳机械振荡器的同步。

Photonic cavity synchronization of nanomechanical oscillators.

机构信息

Department of Electrical Engineering, Yale University, New Haven, Connecticut 06511, USA.

出版信息

Phys Rev Lett. 2013 Nov 22;111(21):213902. doi: 10.1103/PhysRevLett.111.213902. Epub 2013 Nov 21.

Abstract

Synchronization in oscillatory systems is a frequent natural phenomenon and is becoming an important concept in modern physics. Nanomechanical resonators are ideal systems for studying synchronization due to their controllable oscillation properties and engineerable nonlinearities. Here we demonstrate synchronization of two nanomechanical oscillators via a photonic resonator, enabling optomechanical synchronization between mechanically isolated nanomechanical resonators. Optical backaction gives rise to both reactive and dissipative coupling of the mechanical resonators, leading to coherent oscillation and mutual locking of resonators with dynamics beyond the widely accepted phase oscillator (Kuramoto) model. In addition to the phase difference between the oscillators, also their amplitudes are coupled, resulting in the emergence of sidebands around the synchronized carrier signal.

摘要

同步在振荡系统中是一种常见的自然现象,并且正在成为现代物理学中的一个重要概念。由于其可控的振荡特性和可设计的非线性,纳米机械谐振器是研究同步的理想系统。在这里,我们通过光子谐振器演示了两个纳米机械谐振器的同步,从而实现了机械隔离的纳米机械谐振器之间的光机械同步。光反作用导致机械谐振器的反应和耗散耦合,导致相干振荡和谐振器的相互锁定,其动力学超出了广泛接受的相位振荡器(Kuramoto)模型。除了振荡器之间的相位差之外,它们的幅度也被耦合,导致在同步载波信号周围出现边带。

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