Yan Xiao-Bo, Cui Cui-Li, Gu Kai-Hui, Tian Xue-Dong, Fu Chang-Bao, Wu Jin-Hui
Opt Express. 2014 Mar 10;22(5):4886-95. doi: 10.1364/OE.22.004886.
We study a double-cavity optomechanical system in which a movable mirror with perfect reflection is inserted between two fixed mirrors with partial transmission. This optomechanical system is driven from both fixed end mirrors in a symmetric scheme by two strong coupling fields and two weak probe fields. We find that three interesting phenomena: coherent perfect absorption (CPA), coherent perfect transmission (CPT), and coherent perfect synthesis (CPS) can be attained within different parameter regimes. That is, we can make two input probe fields totally absorbed by the movable mirror without yielding any energy output from either end mirror (CPA); make an input probe field transmitted from one end mirror to the other end mirror without suffering any energy loss in the two cavities (CPT); make two input probe fields synthesized into one output probe field after undergoing either a perfect transmission or a perfect reflection (CPS). These interesting phenomena originate from the efficient hybrid coupling of optical and mechanical modes and may be all-optically controlled to realize novel photonic devices in quantum information networks.
我们研究了一个双腔光机械系统,其中一个具有完美反射的可移动镜子被插入到两个具有部分透射率的固定镜子之间。这个光机械系统通过两个强耦合场和两个弱探测场以对称方式从两个固定端镜驱动。我们发现,在不同的参数范围内可以实现三种有趣的现象:相干完美吸收(CPA)、相干完美透射(CPT)和相干完美合成(CPS)。也就是说,我们可以使两个输入探测场被可移动镜子完全吸收,而两端镜均不产生任何能量输出(CPA);使一个输入探测场从一个端镜传输到另一个端镜,而在两个腔中不遭受任何能量损失(CPT);使两个输入探测场在经历完美透射或完美反射后合成为一个输出探测场(CPS)。这些有趣的现象源于光学和机械模式的有效混合耦合,并且可以通过全光控制来实现量子信息网络中的新型光子器件。