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在垂直 GaAs/AlAs 微腔中实现太赫兹声子和近红外光的强光机械耦合。

Strong optical-mechanical coupling in a vertical GaAs/AlAs microcavity for subterahertz phonons and near-infrared light.

机构信息

Instituto Balseiro and Centro Atómico Bariloche, CNEA, Bariloche, Río Negro, Argentina.

出版信息

Phys Rev Lett. 2013 Jan 18;110(3):037403. doi: 10.1103/PhysRevLett.110.037403. Epub 2013 Jan 14.

Abstract

We show that distributed Bragg reflector GaAs/AlAs vertical cavities designed to confine photons are automatically optimal to confine phonons of the same wavelength, strongly enhancing their interaction. We study the impulsive generation of intense coherent and monochromatic acoustic phonons by following the time evolution of the elastic strain in picosecond-laser experiments. Efficient optical detection is assured by the strong phonon backaction on the high-Q optical cavity mode. Large optomechanical factors are reported (~THz/nm range). Pillar cavities based in these structures are predicted to display picogram effective masses, almost perfect sound extraction, and threshold powers for the stimulated emission of phonons in the range μW-mW, opening the way for the demonstration of phonon "lasing" by parametric instability in these devices.

摘要

我们表明,设计用于限制光子的分布式布拉格反射器 GaAs/AlAs 垂直腔自动优化为限制相同波长的声子,从而强烈增强它们的相互作用。我们通过在皮秒激光实验中跟踪弹性应变的时间演化来研究强烈相干和单色声子的脉冲产生。通过强声子反向作用于高 Q 值光学腔模式,实现了有效的光学检测。报告了大的光机械因子(~THz/nm 范围)。基于这些结构的立柱腔预计将显示出皮克克有效质量、几乎完美的声音提取以及声子受激发射的阈值功率在μW-mW 范围内,为通过这些器件中的参量不稳定性演示声子“激光”铺平了道路。

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