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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Microscopic Determination of Second-Order Nonlinear Optical Susceptibility Tensors
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Microscopic Determination of Second-Order Nonlinear Optical Susceptibility Tensors

机译:二阶非线性光学磁化张量的微观确定

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摘要

We demonstrate a microscopy technique that extracts tensorial information about the second-order nonlinear optical susceptibility and hyperpolarizability of molecular materials. Our technique is based on polarization-dependent second-harmonic generation and a genetic algorithm, using which the best possible match with the measured data, and the possible susceptibility tensor components are found. In contrast to existing techniques, which access only the magnitude of the nonlinear response, our technique also provides information about the phase of the tensor components, which is associated with molecular resonances. After verifying the technique using simulated model structures with well-known symmetries, we demonstrate its capabilities using model surface samples consisting of single purple membrane (PM) fragments of bacteriorhodopsin (bR) chromoproteins. Since the supramolecular structures of PM, bR, and photoactive retinal molecules are known, complex-valued tensorial information on the molecular hyperpolarizabilities can also be extracted. Our technique opens new possibilities for obtaining detailed structural information on biomolecular samples with microscopic resolution.
机译:我们演示了一种显微镜技术,该技术提取有关分子材料的二阶非线性光学敏感性和超极化性的张量信息。我们的技术基于偏振相关的二次谐波生成和遗传算法,利用该算法可以与测量数据进行最佳匹配,并找到可能的磁化率张量分量。与仅访问非线性响应幅度的现有技术相比,我们的技术还提供了有关张量分量相位的信息,这与分子共振有关。在使用具有众所周知的对称性的模拟模型结构验证了该技术之后,我们使用由细菌视紫红质(bR)染色体蛋白的单个紫色膜(PM)片段组成的模型表面样本证明了其功能。由于PM,bR和光敏性视网膜分子的超分子结构是已知的,因此也可以提取有关分子超极化性的复数值张量信息。我们的技术为获得具有微观分辨率的生物分子样品的详细结构信息提供了新的可能性。

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