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Fabrication of 4, 5, or 6-fold symmetric 3D photonic structures using single beam and single reflective optical element based holographic lithography

机译:使用基于单光束和单反射光学元件的全息光刻技术制作4、5或6倍对称3D光子结构

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Here we present the holographic fabrication of large area 3D photonic structures using a single reflective optical element (ROE) with a single beam, single exposure process. The ROE consists of a 3D printed plastic support that houses 4, 5, or 6-fold symmetrically arranged reflecting surfaces which redirect a central beam into multiple side beams in an umbrella configuration to be used in multi-beam holography. With a circular polarized beam incident to silicon wafer reflecting surfaces at the Brewster angle, multiple linearly s-polarized side beams are generated. 3D photonic crystal structures of woodpile, Penrose quasi-crystal, and hexagonal symmetry were produced with ROEs that have 4+1, 5+1 and 6+1 beam configurations, respectively. Since the ROE design can be readily changed and implemented for different photonic crystal structures, this fabrication method is more versatile and cost effective than currently comparable single optical methods like prisms and phase masks.
机译:在这里,我们介绍了使用具有单个光束,单个曝光过程的单个反射光学元件(ROE)进行大面积3D光子结构的全息照相制造。 ROE由3D打印的塑料支撑物组成,该支撑物容纳4、5或6倍对称布置的反射面,这些反射面将中心光束重定向为伞状配置的多个侧光束,以用于多光束全息照相。当圆偏振光束以布儒斯特角入射到硅晶片反射表面时,会产生多个线性s偏振的侧光束。分别具有4 + 1、5 + 1和6 + 1光束配置的ROE产生了木桩,彭罗斯准晶体和六边形对称的3D光子晶体结构。由于ROE设计可以很容易地更改并针对不同的光子晶体结构实施,因此这种制造方法比目前可比较的单一光学方法(如棱镜和相位掩模)更具通用性和成本效益。

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