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Rapid fabrication of two- and three-dimensional photonic crystals using multiple-exposure of two-beam interference pattern technique

机译:使用双光束干涉图案技术的多曝光来快速制造两维光子晶体

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A simple optical interference method for fabricating two- and three-dimensional (2D and 3D) periodical structures is theoretically and experimentally demonstrated. Multiple-exposure of two-beam interference pattern into a photopolymerizable resist creates high quality 2D or 3D microstructures. The type of periodic structure depends on the orientation of the photoresist with respect to the laser beams and the number of exposure. Square or hexagonal structures are obtained by choosing an angle of 90?or 60? respectively, between two different exposures. 2D structures are obtained with two or three equal exposures. 3D structures with different types (bcc, fcc, Woodpile, etc.) are obtained with three or four exposures and appropriate rotation angles. This method presents many advantages over others using multi-beam (three-, four-, or five-beam) interference: i) easy to fabricate different structures(hexagonal or square) by simply rotating the sample, ii) best contrast between the minimal and maximal intensities of interference pattern due to the identical polarization of two laser beams in the interference area, iii) in particular, 3D periodical structures have the same period in three dimensions, which can't be obtained by one exposure of multi-beam interference. The experimental results obtained with SU-8 negative photoresist are well in agreement with the theoretical predictions. Such fabrication technique can be useful for applications in photonic crystals research.
机译:理论上和实验证明,用于制造两维(2D和3D和3D)周期结构的简单光学干扰方法。双梁干涉图案的多曝光成可光聚合的抗蚀剂产生高质量的2D或3D微结构。周期性结构的类型取决于光致抗蚀剂相对于激光束的方向和曝光的次数。通过选择90Ω或60的角度来获得正方形或六边形结构?分别在两个不同的曝光之间。使用两三个相等的曝光获得2D结构。用三个或四种曝光和适当的旋转角度获得具有不同类型(BCC,FCC,Woodpile等)的3D结构。这种方法使用多光束(三个,四个或五梁)干扰来呈现与他人的许多优点由于干扰区域,III的两个激光束的相同偏振,特别地,3D周期性结构的三维周期具有相同的三维周期,这是由多光束干扰的一次曝光不能获得的三维周期的相同周期。用SU-8负性光致抗蚀剂获得的实验结果与理论预测一致。这种制造技术可用于光子晶体研究中的应用。

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