Focusing reflector and lens with non-periodic phase-matched subwavelength high contrast grating

Qinglong Yu, Changsheng Zhang, Hongbo Zhu, Miao Zhang, Yongjin Wang
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引用次数: 1

Abstract

In this paper, we propose novel planar subwavelength non-periodic high contrast gratings (HCGs) with excellent focusing abilities due to their phase-matched structures. Rigorous coupled-wave analysis (RCWA) method and finite-element method (FEM) are performed to investigate the nonperiodic HCG structures for either focusing reflector or lens at the wavelength of 1.55μm. The structure with focusing ability is optimized to simultaneously meet the phase-matched conditions of the reflectors and lenses. When the grating bars material is silicon, the HCG serves as focusing reflector, and the HCG with the grating bars of GaN has transmission focusing ability. Both reflector and lens have large numerical aperture (NA), high diffraction efficiency and excellent focusing ability. These HCG structures are promising for designing and fabricating photonic devices that require focusing components, especially for silicon and III-nitride integrated photonic devices.
带有非周期性相位匹配亚波长高对比度光栅的聚焦反射镜和透镜
本文提出了新型平面亚波长非周期性高对比度光栅(HCG),其相位匹配结构使其具有出色的聚焦能力。本文采用严格耦合波分析法(RCWA)和有限元法(FEM)研究了波长为1.55μm的非周期性HCG结构,该结构既可用于聚焦反射镜,也可用于聚焦透镜。对具有聚焦能力的结构进行了优化,以同时满足反射镜和透镜的相位匹配条件。当栅条材料为硅时,HCG 可作为聚焦反射器,而栅条材料为氮化镓的 HCG 则具有透射聚焦能力。反射镜和透镜都具有大数值孔径(NA)、高衍射效率和出色的聚焦能力。这些 HCG 结构有望用于设计和制造需要聚焦元件的光子器件,特别是硅和三氮化物集成光子器件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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