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Propagation methods for the analysis of bistable devices and spatial light modulators based on nonlinear molecular media

机译:基于非线性分子介质的双稳态器件和空间光调制器分析的传播方法

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Abstract: We already discussed the bistable behavior of a Fabry Perot resonator filled with molecular media as well as the characteristics of a spatial light modulator (SLM) based on the nonlinearity induced by excited state absorption. In the present paper we present two practical configurations. First we analyze a cavity-less bistable element which removes some of the realization problems related to high finess cavity. In this configuration the nonlinear medium is located in one arm of an optical interferometer. The scheme provides the required amount of positive feedback by the bistable mechanism - but without a cavity. We applied the nonlinear eikonal approximation, a method which takes care of the detailed propagation effects, and obtained conditions for bistability, as well as optimizing the design parameters such as the output mirror reflectivity, etc. !9
机译:摘要:我们已经讨论了由分子态介质填充的Fabry Perot谐振器的双稳态行为,以及基于激发态吸收引起的非线性的空间光调制器(SLM)的特性。在本文中,我们提出了两种实用的配置。首先,我们分析了无腔双稳态元件,该元件消除了与高细度腔有关的一些实现问题。在这种配置中,非线性介质位于光学干涉仪的一个臂中。该方案通过双稳态机制提供了所需的正反馈量-但没有空腔。我们应用了非线性本征近似法,该方法考虑了详细的传播效应,并获得了双稳态的条件,并优化了设计参数,例如输出镜的反射率等!9

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