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Production of dichroitic 3D structures by fs laser irradiation in composite glass containing Ag nanoparticles

机译:在含银纳米粒子的复合玻璃中通过fs激光辐照产生二色性3D结构

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By irradiating glass containing spherical Ag nanoparticles successively with fs laser pulses at different wavelengths, we were able to produce three-dimensional, permanent anisotropic modifications based on shape deformations of the nanoparticles in this nanocomposite material. This novel method is able to create dichroism in the visible and near IR part of the spectrum by deformation of nanoparticles to oblong shapes oriented parallel to the laser polarization. Using samples with a vertical gradient of the fill factor of Ag nanoparticles in the glass substrate and an accordingly inhomogeneous broadening of the surface plasmon band, modifications in various depths can be made using different excitation wavelengths. The induced modifications are reversible: heating to ≈ 600℃ restores the spherical shape of Ag nanoparticles. This technique can be useful for manufacturing of different, 3D, polarization and wavelength selective micro-devices such as polarizers, filters, gratings, display and rewriting optical 3D data storage devices. As examples, we will demonstrate in this paper how (ⅰ) three areas of different color can be produced in three different depths of the sample and (ⅱ) how a series of multicolor irradiations can be used to produce dichroic structures of high polarization contrast.
机译:通过用不同波长的fs激光脉冲依次照射包含球形Ag纳米粒子的玻璃,我们能够基于这种纳米复合材料中纳米粒子的形状变形产生三维永久各向异性。这种新方法能够通过使纳米粒子变形为平行于激光偏振方向的长方形形状,在光谱的可见光和近红外部分产生二向色性。使用在玻璃基板中具有银纳米颗粒的填充因子的垂直梯度并且表面等离激元带相应地不均匀加宽的样品,可以使用不同的激发波长来进行各种深度的修饰。诱导的修饰是可逆的:加热到≈600℃可以还原Ag纳米颗粒的球形。该技术可用于制造不同的3D,偏振和波长选择微设备,例如偏振器,滤光器,光栅,显示和重写光学3D数据存储设备。作为示例,我们将在本文中演示如何(ⅰ)在样品的三个不同深度中产生三个不同颜色的区域,以及(ⅱ)如何使用一系列多色辐射来产生高偏振对比度的二色性结构。

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