首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Phase knob for switching steady-state behaviors from bistability to multistability via spontaneously generated coherence
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Phase knob for switching steady-state behaviors from bistability to multistability via spontaneously generated coherence

机译:相位旋钮,用于通过自发产生的相干性将稳态行为从双稳态切换到多稳态

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摘要

We conducted a theoretical investigation of the optical steady-state behavior in N four-level Y-type atoms driven coherently by a probe laser and a single elliptically polarized field (EPF) by means of a unidirectional ring cavity. It was found that the optical bistability can be observed for a wide regime of frequency detuning of the probe field, intensity of the EPF, and the atomic cooperation parameter. Interestingly, in principle the optical steady-state behavior can be switched from optical bistability to multistability or vice versa by adjusting the phase difference between two components of the polarized electric field of the EPF if the perfect spontaneously generated coherence of atoms is included. Our results illustrate the potential to utilize EPF for all-optical switching in atomic systems through the phase control, as well as provide guidance in the design for possible experimental implementations.
机译:我们对由探测激光器和单向椭圆偏振场(EPF)相干驱动的N个四能级Y型原子的光学稳态行为进行了理论研究。已经发现,对于探针场的频率失谐,EPF的强度和原子配合参数的宽范围的机制,可以观察到光学双稳性。有趣的是,原则上,如果包括原子的自发产生的完美相干性,则可以通过调整EPF极化电场的两个分量之间的相位差,将光学稳态行为从光学双稳态切换为多重稳定性,反之亦然。我们的结果说明了通过相位控制将EPF用于原子系统中的全光切换的潜力,并为可能的实验实现提供了设计指导。

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