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首页> 外文期刊>Journal of Laser Applications >New opportunities for custom-shape patterning using polarization control in confocal laser beam interference setup
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New opportunities for custom-shape patterning using polarization control in confocal laser beam interference setup

机译:使用偏振激光束干扰设置中使用偏振控制的自定义形状图案的新机遇

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摘要

Fabrication of photonic devices requires fast and reliable microstructuring approach. For example, efficient generation of fine 2D patterns in thin metal films is needed in plasmonic metamaterial devices. In this paper, the authors present an approach for the flexible generation of the periodic pattern using a laser beam interference patterning setup. So far, interference patterning was mostly limited to the periodic patterns of lines and dots. A variety of interference patterns can be significantly increased by controlling the polarization orientation of each interfering beam. The authors demonstrate the experimental setup for polarization control in the confocal six-beam inter- ference configuration. Various periodic intensity patterns were generated and observed with a CCD camera using this setup. Additionally, the generated patterns were replicated in a thin metal film experimentally. Efficient and simple fabrication process and relatively high patterning flexibility suggest that interference patterning with polarization control may become an important tool in metamaterial fabrication.
机译:光子器件的制造需要快速可靠的微结构化方法。例如,在等压超材料装置中需要高效地产生薄金属膜中的细2D图案。在本文中,作者介绍了一种使用激光束干扰图案化设置的柔性生成周期性模式的方法。到目前为止,干扰图案主要限于线和点的周期性模式。通过控制每个干涉光束的偏振取向,可以显着增加各种干涉图案。作者证明了共聚焦六光束间配置中的偏振控制的实验设置。使用此设置使用CCD相机生成并观察各种周期性强度模式。另外,在实验中,产生的模式在薄金属膜中复制。高效且简单的制造工艺和相对高的图案化灵活性表明,具有偏振控制的干扰图案可以成为超材料制造中的重要工具。

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  • 来源
    《Journal of Laser Applications》 |2016年第1期|a1011501.1-011501.5|共6页
  • 作者单位

    Center for Physical Sciences and Technology Savanoriu Ave. 231 Vilnius LT-02300 Lithuania;

    Center for Physical Sciences and Technology Savanoriu Ave. 231 Vilnius LT-02300 Lithuania;

    Center for Physical Sciences and Technology Savanoriu Ave. 231 Vilnius LT-02300 Lithuania;

    Center for Physical Sciences and Technology Savanoriu Ave. 231 Vilnius LT-02300 Lithuania;

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