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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Bistable phase-conjugate reflectivity controlled by a forward pump beam
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Bistable phase-conjugate reflectivity controlled by a forward pump beam

机译:前向泵浦光束控制的双稳态相位共轭反射率

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摘要

One of the typical methods to generate the phase-conjugate beam is four-wave mixing with a photorefractive crystal. It is known that the phase-conjugate reflectivity shows the bistability in some cases. Analyzing the temporal property of four-wave mixing, we offer a new method to control the bistable phase-conjugate reflectivity, and we perform an experiment of the bistability control by the method. An equation to obtain the threshold value of the coupling strength for showing the bistability is derived by a steady-state analysis of four-wave mixing, and the temporal property of four-wave mixing is studied with two different initial conditions that are used for letting the phase-conjugate reflectivity R converge to an off state (R = 0) or to an on state (R > 0). The initial condition for the converging off state is that the forward pump beam is turned off throughout. The condition for the converging on state is that the forward pump beam is turned on in advance, and after enough time passes, it is turned off. In both conditions, the backward pump beam and the probe beam continue to illuminate throughout. Whereas both optical arrangements are equivalent after setting up these initial conditions, each phase-conjugate reflectivity converges to different stationary values, a = 0 and R > 0. Besides, an experiment is performed and we actually control the bistability by this method. Furthermore, the temporal and the spatial variation of the refractive-index grating in the photorefractive crystal is investigated, and the process of the bistability is explained. (C) 1997 Optical Society of America.
机译:产生相位共轭光束的典型方法之一是与光折射晶体进行四波混合。已知在某些情况下,相位共轭反射率显示出双稳性。分析了四波混频的时间特性,提供了一种控制双稳态相位共轭反射率的新方法,并通过该方法进行了双稳态控制实验。通过对四波混频的稳态分析,得出了获得表示双稳性的耦合强度阈值的方程式,并使用两种不同的初始条件研究了四波混频的时间特性。相位共轭反射率R收敛到关闭状态(R = 0)或打开状态(R> 0)。会聚状态的初始条件是前向泵浦光束始终处于关闭状态。会聚状态的条件是,前向泵浦光束会先打开,经过足够的时间后会关闭。在这两种情况下,后向泵浦光束和探测光束始终照亮。设置这些初始条件后,两种光学布置都是等效的,但每个相位共轭反射率都收敛到不同的固定值a = 0且R>0。此外,还进行了实验,我们实际上通过这种方法控制了双稳态。此外,研究了光折射晶体中折射率光栅的时间和空间变化,并解释了双稳态的过程。 (C)1997年美国眼镜学会。

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