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STM induced second harmonic generation: towards near-fieldnonlinear optical microscopy

机译:STM诱导二次谐波发电:靠近截止磁性线性光学显微镜

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We propose an original technique which takes profit of Second Harmonic Generation (SHG) effects in molecular solutions. Our technique exploits the specificities of molecular contributions. We show that we can use the electric field present inside a Scanning Tunneling Microscope (STM) junction towards creating a local non-centrosymmetry via molecular orientation under the tip. Experiments were performed inside a STM junction immersed in concentrated solutions of azo-dyes molecules chosen for their highly nonlinear properties and the possibility to generate a local SHG signal from those molecules was demonstrated. More particularly, the quadratic dependence of the SHG signal intensity with the voltage applied between the tip and the substrate unambiguously shows that it comes from an electric field induced molecular polarization under the tip. The dependence of the signal with the tip height or size is reported and discussed. This approach opens the way to a new and original near field optical microscopy technique.
机译:我们提出了一种原始技术,其利润在分子溶液中占用二次谐波产生(SHG)效应。我们的技术利用分子贡献的特异性。我们表明我们可以在扫描隧道显微镜(STM)结内部的电场在尖端下通过分子取向产生局部非Centroosmmetry。在浸入所选择的偶氮染料分子的浓缩溶液中进行实验,对它们的高度非线性性质的富含偶氮分子溶液,并证明了从这些分子产生局部SHG信号的可能性。更具体地,SHG信号强度与尖端和基板之间的电压的二次依赖性明确地表明它来自尖端下的电场诱导的分子极化。报告并讨论了信号与尖端高度或大小的依赖性。这种方法打开了一种新的和原始的近场光学显微镜技术。

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