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Origin of anomalous nanostructures formation under linear polarized femtosecond laser irradiation of condensed matter

机译:飞秒激光在凝聚态线偏振激光辐照下形成异常纳米结构的起源

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Analysis of the results obtained in experiments on formation of spatial nanogratings with anomalous orientation at boundary between different condensed media (metals, semiconductors and dielectrics) is presented. The analysis is made in the context of a universal polariton model of the laser-induced damage of the condensed media. To explain the wide set of findings of nanostructure formation with anomalous orientation a physical model based on phenomena of excitation of wedge (channel) surface plasmon polaritons with mutually antithetical directions of propagation and their interference at spatial overlapping is proposed. To explain formation of nanogratings with a spatial period dramatically less than a wavelength of the actuating laser radiation the previously suggested non-linear mathematical model of laser-induced formation of nanograting spatial periods is used.
机译:介绍了在不同的冷凝介质(金属,半导体和电介质)之间的边界处形成具有异常取向的空间纳米光栅的实验结果。该分析是在激光极化引起的冷凝介质损伤的通用极化模型的背景下进行的。为了解释具有异常取向的纳米结构形成的广泛发现,提出了一种基于具有相互相反的传播方向的楔形(通道)表面等离激元极化子的激发现象及其在空间交叠处的干扰的物理模型。为了解释空间周期显着小于激励激光辐射波长的纳米光栅的形成,使用了先前提出的激光诱导的纳米光栅空间周期形成的非线性数学模型。

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