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Phase-controlled all-optical switching based on coherent population oscillation in a two-level system

机译:两级系统中基于相干总体振荡的相控全光开关

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摘要

We theoretically propose a scheme of phase-controlled all-optical switching due to the effect of degenerate four-wave mixing (FWM) and coherent population oscillation (CPO) in a two-level system driven by a strong coupling field and two weak symmetrically detuned fields. The results show that the phase of the FWM field can be utilized to switch between constructive and destructive interference, which can lead to the transmission or attenuation of the probe field and thus switch the field on or off. We also find the intensity of the coupling field and the propagation distance have great influence on the performance of the switching. In our scheme, due to the quick response in semiconductor systems, a fast all-optical switching can be realized at low light level.
机译:我们在理论上提出了一种在强耦合场和两个弱对称失谐驱动的两能级系统中由于简并四波混频(FWM)和相干粒子振荡(CPO)的影响而实现的相位控制全光切换方案。领域。结果表明,FWM场的相位可用于在相长干涉和相消干涉之间进行切换,这可能导致探测场的传输或衰减,从而打开或关闭探测场。我们还发现耦合场的强度和传播距离对开关性能有很大影响。在我们的方案中,由于半导体系统的快速响应,因此可以在低照度下实现快速的全光切换。

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