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Flexible Holographic Fabrication of 3D Photonic Crystal Templates with Polarization Control through a 3D Printed Reflective Optical Element

机译:通过3D打印的反射光学元件进行偏振控制的3D光子晶体模板的灵活全息制作

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摘要

In this paper, we have systematically studied the holographic fabrication of three-dimensional (3D) structures using a single 3D printed reflective optical element (ROE), taking advantage of the ease of design and 3D printing of the ROE. The reflective surface was setup at non-Brewster angles to reflect both s- and p-polarized beams for the interference. The wide selection of reflective surface materials and interference angles allow control of the ratio of s- and p-polarizations, and intensity ratio of side-beam to central beam for interference lithography. Photonic bandgap simulations have also indicated that both s and p-polarized waves are sometimes needed in the reflected side beams for maximum photonic bandgap size and certain filling fractions of dielectric inside the photonic crystals. The flexibility of single ROE and single exposure based holographic fabrication of 3D structures was demonstrated with reflective surfaces of ROEs at non-Brewster angles, highlighting the capability of the ROE technique of producing umbrella configurations of side beams with arbitrary angles and polarizations and paving the way for the rapid throughput of various photonic crystal templates.
机译:在本文中,我们利用ROE的易于设计和3D打印的优势,系统地研究了使用单个3D打印反射光学元件(ROE)的三维(3D)结构的全息照相制作。反射表面设置为非布鲁斯特角,以反射s偏振和p偏振光束的干涉。反射表面材料和干涉角的选择范围广泛,可以控制s和p偏振比以及干涉光刻中侧光束与中心光束的强度比。光子带隙模拟还表明,有时需要在反射侧光束中同时使用s和p极化波,以实现最大的光子带隙尺寸和光子晶体内部电介质的某些填充率。在非布鲁斯特角的ROE反射表面上展示了3D结构的单ROE和基于单曝光的全息照相制作的灵活性,突出了ROE技术产生具有任意角度和偏振的侧光束伞状结构并铺平道路的能力用于各种光子晶体模板的快速吞吐。

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