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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Determination of surface complex nonlinear optical susceptibilities and molecular orientational distribution; functions using resonant surface second-harmonic generation
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Determination of surface complex nonlinear optical susceptibilities and molecular orientational distribution; functions using resonant surface second-harmonic generation

机译:测定表面复杂的非线性光学磁化率和分子取向分布;利用共振表面二次谐波产生功能

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Using the resonant optical surface second-harmonic generation (SHG), we have determined the relative values of the complex nonlinear optical (NLO) components (chi(zzz), chi(zzz), and chi(xxz)) at isotropic interfaces (C-infinity upsilon) of a polymer with SHG active side chains. The introduced configuration of the SHG experiment was a polarizer-rotating quarter wave plate-sample-analyzer. It was shown that this configuration gives information on complex NLO coefficients without using the Kleinmann symmetry. For the experiments, we measured resonant surface SHG from the air-polymer and the substrate-polymer interfaces of a thick polymer film. By theoretically fitting the SHG data, we unambiguously determined the nonlinear susceptibility components at the both interfaces of the polymer film. Moreover, unbiased molecular orientational distribution functions (ODFs) at both interfaces were also determined using the modified maximum entropy method. The obtained ODFs were found to be quite different from the previous ones obtained by assuming the Kleinmann symmetry, indicating the important role of the imaginary part of X's played when determining ODFs. [S1063-651X(98)02210-7]. [References: 22]
机译:使用共振光学表面二次谐波(SHG),我们已经确定了各向同性界面(C)上的复杂非线性光学(NLO)分量(chi(zzz),chi(zzz)和chi(xxz))的相对值-具有SHG活性侧链的聚合物的-无限上级硅烷)。 SHG实验的引入配置是偏振片旋转四分之一波片样品分析仪。结果表明,该配置无需使用Kleinmann对称性即可提供有关复数NLO系数的信息。对于实验,我们从厚聚合物膜的空气-聚合物界面和基底-聚合物界面测量了共振表面SHG。通过理论上拟合SHG数据,我们明确确定了聚合物薄膜两个界面处的非线性磁化率分量。此外,还使用改进的最大熵方法确定了两个界面上的无偏分子取向分布函数(ODF)。发现所获得的ODF与假定Kleinmann对称性所获得的ODF完全不同,这表明X的虚部在确定ODF时起着重要作用。 [S1063-651X(98)02210-7]。 [参考:22]

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