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A simple and tunable switch between slow- and fast-light in two signal modes with an optomechanical system

机译:通过光机械系统在两种信号模式下的慢光和快光之间进行简单可调的切换

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摘要

The control of slow and fast light propagation is a challenging task. Here, we theoretically study the dynamics of a driven optomechanical cavity coupled to a charged nanomechanical resonator (NR) via Coulomb interaction. We find that the tunable switch between slow-and fast-light for two signal modes can be observed from the output field by adjusting the laser-cavity detuning in this system. Moreover, the frequencies of two signal light can be tuned by Coulomb coupling strength. In comparison with previous schemes, the clear advantage of our scheme is that we can simply switch from fast-to slow-light in two signal modes by only adjusting the laser-cavity deturning from Delta = omega(1) to Delta = -omega(1). The proposal may have potential application in optical router and quantum optomechanical memory.
机译:控制慢速和快速光的传播是一项艰巨的任务。在这里,我们从理论上研究了通过库仑相互作用耦合到带电纳米机械谐振器(NR)的驱动光机械腔的动力学。我们发现,通过调整该系统中的激光腔失谐,可以从输出场观察到两种信号模式在慢光和快光之间的可调开关。而且,两个信号光的频率可以通过库仑耦合强度来调谐。与以前的方案相比,我们方案的明显优势在于,只需将激光腔从Delta = omega(1)转换为Delta = -omega( 1)。该提议可能在光路由器和量子光机电存储器中具有潜在的应用。

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