...
首页> 外文期刊>Physical Review, A >Response of a mechanical oscillator in an optomechanical cavity driven by a finite-bandwidth squeezed vacuum excitation
【24h】

Response of a mechanical oscillator in an optomechanical cavity driven by a finite-bandwidth squeezed vacuum excitation

机译:有限带宽压缩真空激励驱动的光机械腔中机械振荡器的响应

获取原文
获取原文并翻译 | 示例

摘要

In this paper, we theoretically investigate the displacement and momentum fluctuations spectra of the movable mirror in a standard optomechanical system driven by a finite-bandwidth squeezed vacuum light accompanying a coherent laser field. Two cases in which the squeezed vacuum is generated by degenerate and nondegenerate parametric oscillators (DPO and NDPO) are considered. We find that for the case of finite-bandwidth squeezed vacuum injection, the two spectra exhibit unique features, which strongly differ from those of broadband squeezing excitation. In particular, the spectra exhibit a three-peaked and a four-peaked structure, respectively, for the squeezing injection from DPO and NDPO. Besides, some anomalous characteristics of the spectra such as squeezing-induced pimple, hole burning, and dispersive profile are found to be highly sensitive to the squeezing parameters and the temperature of the mirror. We also evaluate the mean-square fluctuations in position and momentum quadratures of the movable mirror and analyze the influence of the squeezing parameters of the input field on the mechanical squeezing. It will be shown that the parameters of driven squeezed vacuum affects the squeezing. We find the optimal mechanical squeezing is achievable via finite-bandwidth squeezed vacuum injection which is affected by the intensity of squeezed vacuum. We also show that the phase of incident squeezed vacuum determines whether position or momentum squeezing occurs. Our proposed scheme not only provides a feasible experimental method to detect and characterize squeezed light by optomechanical systems, but also suggests a way for controllable transfer of squeezing from an optical field to a mechanical oscillator.
机译:在本文中,我们从理论上研究了由有限带宽压缩的真空光驱动并伴随相干激光场驱动的标准光学机械系统中可移动反射镜的位移和动量波动谱。考虑了简并和非简并参数振荡器(DPO和NDPO)产生压缩真空的两种情况。我们发现,对于有限带宽的压缩真空注入,这两个光谱表现出独特的特征,这与宽带压缩激发的光谱有很大不同。尤其是,对于从DPO和NDPO进行的挤压注入,光谱分别显示了三峰和四峰结构。此外,发现光谱的某些异常特征,例如挤压引起的丘疹,烧孔和色散分布对挤压参数和反射镜温度高度敏感。我们还评估了可移动镜的位置和动量正交的均方波动,并分析了输入场的压缩参数对机械压缩的影响。可以看出,驱动挤压真空的参数会影响挤压。我们发现,通过受压缩真空强度影响的有限带宽压缩真空注入可以实现最佳的机械压缩。我们还表明,入射挤压真空的相位决定了位置挤压还是动量挤压。我们提出的方案不仅提供了一种可行的实验方法来检测和表征光学机械系统的压缩光,而且还提出了一种将压缩光从光场转移到机械振荡器的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号