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Noninvasive imaging with thin dye-doped liquid crystal films

机译:具有薄染料掺杂液晶膜的非侵入性成像

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We discuss several imaging techniques that have been studied for optical imaging through turbid media. The effectiveness of many of these techniques hinges on the nonlinear optical material used in the imaging process. We have used Rhodamine dye-doped K15 liquid crystal films in a degenerate four-wave mixing geometry in order to study the potential of this material for low-coherence imaging applications. First, we observed the dc-field-induced Freedericksz transition, which leads to a reorientational nonlinearity in our nematic liquid crystal film, and is responsible for the large optical nonlinearity that leads to phase conjugation. For our low absorbing films, this threshold voltage was on the order of 400 V/cm. Next, we show that our liquid crystal films exhibited higher phase conjugate reflectivities (0.6% maximum) for smaller beam crossing angles, which is necessary for wider field-of-views in the imaging process. Finally, we studied the time-dependent response of the phase conjugate reflectivity due to electric field assisted nonlinearities in dye-doped liquid crystal films. The motivation of these studies is to improve the imaging resolution demonstrated in our previous work.
机译:我们讨论了通过浑浊介质研究了用于光学成像的几种成像技术。许多这些技术的有效性在成像过程中使用的非线性光学材料上铰接。我们在退化的四波混合几何形状中使用了罗丹明染料掺杂的K15液晶膜,以研究该材料的潜在低相干成像应用。首先,我们观察到DC场诱导的FreederickSz转换,这导致我们向列液晶膜中的重新定向非线性,并且负责导致相位缀合的大型光学非线性。对于我们的低吸收膜,该阈值电压约为400V / cm。接下来,我们表明,对于较小的光束交叉角度,我们的液晶膜表现出更高相缀合物反射率(0.6%最大值),这对于在成像过程中更广泛的视野是必要的。最后,我们研究了染料掺杂液晶膜中的电场辅助非线性引起的相位缀合物反射率的时间依赖性响应。这些研究的动机是提高我们以前的工作中表现出的成像分辨率。

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