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Characterization and applications of plasmon fields in metal nanostructures

机译:金属纳米结构中等离激元场的表征及应用

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The excitation of plasmons in metallic nanostructures by light can give rise to pronounced local optical field enhancement with respect to the incident electromagnetic field. The details of these optical near fields depend sensitively on the properties of the nanostructures (material, size and shape), on the light wavelength and polarization, and also on the substrate. In this article we discuss several of these aspects influencing the near-field distribution for a given object and the resulting surface ablation by optical near fields. To this end we use both experimental and simulation techniques. Additionally we will present first results of experiments investigating the light emitted during nanoscale ablation. Finally, we will present an example how plasmon-mediated near-field effects act on the conductance of atomic-size contacts.
机译:光对金属纳米结构中的等离子体激元的激发可以引起相对于入射电磁场的明显的局部光场增强。这些光学近场的细节敏感地取决于纳米结构的性质(材料,尺寸和形状),光的波长和偏振以及基板。在本文中,我们将讨论这些方面中的几个方面,这些方面会影响给定对象的近场分布以及通过光学近场产生的表面烧蚀。为此,我们同时使用了实验和模拟技术。此外,我们将展示研究纳米级消融过程中发射的光的实验的第一结果。最后,我们将提供一个示例,说明等离激元介导的近场效应如何作用于原子级接触的电导。

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