Near-infrared ITO-based photonic hypercrystals with large angle-insensitive bandgaps

Author:

Shen Ke-Sheng1,Li Xin-Kai1,Zheng Yun1,Liu Hong-Chao1,Dong Shi-Qing1,Zhang Jun1,Xia Shi-Qiang1,Dong Chao1,Sun Xiao-Long1,Zhang Xian-Zhou1,Xue Chun-Hua2ORCID,Lu Hai1ORCID

Affiliation:

1. Henan Normal University

2. Guangxi University of Science and Technology

Abstract

The angle-sensitive photonic bandgap (PBG) is one of the typical features of one-dimensional photonic crystals. Based on the phase-variation compensation effect between the dielectric and hyperbolic metamaterials (HMMs), angle-insensitive PBGs can be realized in photonic hypercrystals. However, since hypercrystals are usually constructed using metal components, these angle-insensitive PBGs are mostly limited to narrow bandwidths in visible range. Here, we replace metal with indium tin oxide (ITO) to construct HMMs in the near-infrared range. In these ITO-based HMMs, we experimentally demonstrate the negative refraction of light in transverse magnetic polarization. With this HMM component, we realize a photonic hypercrystal with an angle-insensitive PBG in the wavelength range of 1.15–2.02 µm. These ITO-based hypercrystals with large angle-insensitive PBGs can find applications in near-infrared reflectors or filters.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Henan Province

Natural Science Foundation of Guangxi Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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