首页> 外文会议>2011 1st International Symposium on Access Spaces >Uniform near-field nanopatterning due to the field distribution control by oblique femtosecond laser irradiation to silicon and gold nanoparticles
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Uniform near-field nanopatterning due to the field distribution control by oblique femtosecond laser irradiation to silicon and gold nanoparticles

机译:通过倾斜飞秒激光辐照硅和金纳米粒子的场分布来控制均匀的近场纳米图案

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We present near-field optical properties around silicon and gold nanoparticles aligned on a silicon substrate excited by oblique incidence femtosecond laser for nanohole processing. Near-field nanofabrication will open up smart applications for new optical devices with high-throughput processing. The near field around silicon and gold particles is explained by Mie scattering theory, while the near field around gold nanoparticles is explained by plasmon polaritons inside nanoparticles. With gold nanoparticles, theoretical study revealed that the incident laser energy is concentrated into the contact point between the particle and the substrate due to the image charge inside the substrate at any incident angles. With particles with a dielectric constant as high as silicon, the polarized charge shows a similar effect to the plasmon charge. Therefore the distribution of the concentrated energy provided with silicon nanoparticles is similar to that of gold nanoparticle.
机译:我们介绍了倾斜入射飞秒激光激发的纳米孔处理在硅基板上对准的硅和金纳米粒子周围的近场光学特性。近场纳米制造将为具有高通量处理能力的新型光学设备打开智能应用。硅和金颗粒周围的近场由Mie散射理论解释,而金纳米颗粒周围的近场由纳米颗粒内部的等离激元极化子解释。对于金纳米颗粒,理论研究表明,由于在任何入射角下基板内部的图像电荷,入射激光能量都集中在粒子与基板之间的接触点中。对于介电常数高达硅的粒子,极化电荷显示出与等离子体激元电荷相似的效果。因此,硅纳米颗粒提供的集中能量的分布类似于金纳米颗粒的分布。

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