Lü Xin-You, Wu Ying, Johansson J R, Jing Hui, Zhang Jing, Nori Franco
School of Physics, Huazhong University of Science and Technology, Wuhan 430074, China.
iTHES, RIKEN, Saitama 351-0198, Japan.
Phys Rev Lett. 2015 Mar 6;114(9):093602. doi: 10.1103/PhysRevLett.114.093602. Epub 2015 Mar 4.
We investigate the nonlinear interaction between a squeezed cavity mode and a mechanical mode in an optomechanical system (OMS) that allows us to selectively obtain either a radiation-pressure coupling or a parametric-amplification process. The squeezing of the cavity mode can enhance the interaction strength into the single-photon strong-coupling regime, even when the OMS is originally in the weak-coupling regime. Moreover, the noise of the squeezed mode can be suppressed completely by introducing a broadband-squeezed vacuum environment that is phase matched with the parametric amplification that squeezes the cavity mode. This proposal offers an alternative approach to control the OMS using a squeezed cavity mode, which should allow single-photon quantum processes to be implemented with currently available optomechanical technology. Potential applications range from engineering single-photon sources to nonclassical phonon states.
我们研究了光机械系统(OMS)中压缩腔模与机械模之间的非线性相互作用,这使我们能够选择性地获得辐射压力耦合或参量放大过程。即使OMS最初处于弱耦合状态,腔模的压缩也能将相互作用强度增强到单光子强耦合状态。此外,通过引入与压缩腔模的参量放大相位匹配的宽带压缩真空环境,可以完全抑制压缩模的噪声。该提议提供了一种使用压缩腔模来控制OMS的替代方法,这应该允许利用当前可用的光机械技术来实现单光子量子过程。潜在应用范围从工程单光子源到非经典声子态。