首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Formation of three-dimensional periodic microstructures by interference of four noncoplanar beams
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Formation of three-dimensional periodic microstructures by interference of four noncoplanar beams

机译:四个非共面光束的干涉形成三维周期性微结构

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摘要

A newly reported method of making three-dimensional microstructures or photonic crystals by holographic lithography has some obvious advantages over other techniques with the same purpose. A systematic and comprehensive analysis of interference of four noncoplanar beams (IFNB) is provided. It shows that all 14 Bravais lattices can be formed by means of IFNB and gives explicit relationships between each lattice and the corresponding recording geometry. The concept of pattern contrast is extended to the case of IFNB, and it is indicated that a uniform contrast for each interference term can be obtained by properly choosing the beam ratio and polarization. A calculation algorithm is then developed to optimize the direction of polarization of each beam to ensure maximum uniform contrast. These results, verified by computer simulations, may lay a theoretical foundation for fabrication of photonic crystals with the approach of IFNB.
机译:一种新报道的通过全息光刻法制造三维微结构或光子晶体的方法,与具有相同目的的其他技术相比,具有一些明显的优势。提供了对四个非共面光束(IFNB)的干涉的系统且全面的分析。它表明可以通过IFNB形成所有14个Bravais晶格,并给出了每个晶格与相应记录几何结构之间的明确关系。模式对比度的概念扩展到了IFNB的情况,并且表明可以通过适当选择光束比和偏振来获得每个干扰项的均匀对比度。然后开发一种计算算法,以优化每个光束的偏振方向,以确保最大的均匀对比度。这些结果,通过计算机仿真验证,可以为使用IFNB的方法制造光子晶体奠定理论基础。

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