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砷化镓光机械盘式谐振器中的光弹性耦合

Photoelastic coupling in gallium arsenide optomechanical disk resonators.

作者信息

Baker Christopher, Hease William, Nguyen Dac-Trung, Andronico Alessio, Ducci Sara, Leo Giuseppe, Favero Ivan

出版信息

Opt Express. 2014 Jun 16;22(12):14072-86. doi: 10.1364/OE.22.014072.

Abstract

We analyze the magnitude of the radiation pressure and electrostrictive stresses exerted by light confined inside GaAs semiconductor WGM optomechanical disk resonators, through analytical and numerical means, and find the electrostrictive stress to be of prime importance. We investigate the geometric and photoelastic optomechanical coupling resulting respectively from the deformation of the disk boundary and from the strain-induced refractive index changes in the material, for various mechanical modes of the disks. Photoelastic optomechanical coupling is shown to be a predominant coupling mechanism for certain disk dimensions and mechanical modes, leading to total coupling gom and g(0) reaching respectively 3 THz/nm and 4 MHz. Finally, we point towards ways to maximize the photoelastic coupling in GaAs disk resonators, and we provide some upper bounds for its value in various geometries.

摘要

我们通过解析和数值方法分析了限制在砷化镓半导体回音壁模式光机械盘式谐振器内的光所施加的辐射压力和电致伸缩应力的大小,并发现电致伸缩应力至关重要。对于盘的各种机械模式,我们分别研究了由盘边界变形和材料中应变诱导的折射率变化所导致的几何光弹光机械耦合。对于某些盘尺寸和机械模式,光弹光机械耦合被证明是主要的耦合机制,导致总耦合系数gom和g(0)分别达到3太赫兹/纳米和4兆赫兹。最后,我们指出了使砷化镓盘式谐振器中的光弹耦合最大化的方法,并给出了其在各种几何结构中的值的一些上限。

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