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New Physical Methods for a Space Resolved Mapping of the Macroscopic Polarisation in Molecular Crystals and a Stochastic theory for Understanding

机译:分子晶体中宏观极化的空间分辨映射的新物理方法和用于理解的随机理论

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摘要

The spatial distribution of polarity in molecular crystals built up by dipolar entities was imaged by two new techniques: Scanning pyroelectric microscopy (SPEM) and phase-sensitive second harmonic microscopy (PS-SHM). SPEM maps the variation in electrical polarisation due to a change in temperature (pyroelectric effect). The PS-SHM contrast is caused by a change of the sign of the molecular hyperpolarisability (nonlinear optical effect). A spatial inhomogeneity of polar properties in molecular crystals is predicted by a 2D Ising-type model describing 180°orientational disorder at the crystal-nutrient interface.
机译:通过两种新技术对由偶极实体建立的分子晶体中极性的空间分布进行成像:扫描热电显微镜(SPEM)和相敏二次谐波显微镜(PS-SHM)。 SPEM绘制了由于温度变化(热电效应)而引起的电极化变化。 PS-SHM对比度是由分子超极化性的符号变化(非线性光学效应)引起的。分子晶体中极性性质的空间不均匀性是由二维伊辛型模型预测的,该模型描述了晶体-营养物界面处的180°方向性无序。

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