Photonic band properties of the moiré Kagome lattice

Author:

Fu Yikai1ORCID,Zhang Yu1,Dai Haitao1ORCID,Gao Meini1,Hao Xichen1,Arain Samia1ORCID,Ahmad Aneela1ORCID,Wang Yuhan1,Li Jia23,Mohamed Zolkefl A. Y.1ORCID,Chen Zhenda1,Cao Yaxian1,Wang Ruotong1,Yao Buyi1,Lu Qieni23ORCID,Liu Changlong1,Liu Ying1,Feng Shouzhong4

Affiliation:

1. Tianjin Key Laboratory of Low Dimensional Materials Physics and Preparing Technology, School of Science, Tianjin University 1 , Tianjin 300072, China

2. School of Precision Instrument and Optoelectronics Engineering, Tianjin University 2 , Tianjin 300072, China

3. Key Laboratory of Optoelectronics Information Technology, Ministry of Education 3 , Tianjin 300072, China

4. Anhui Zhongyi New Materials Technology Co., Ltd 4 , Chuzhou 239599, Anhui, China

Abstract

Inspired by the emerging field of twistronics, moiré photonic structures have attracted great interest. In this paper, we introduce the concept of the moiré Kagome lattice (MKL), which arises from the overlapping of a Kagome lattice at a commensurable angle of 38.211°. MKL exhibits a significantly broader main photonic bandgap (PBG) when compared to the traditional Kagome lattice. Through numerical simulations, we delved into the adjustable properties of the PBG of MKL by varying lattice parameters, including filling factors and materials. Meanwhile, we also observed the presence of photonic flatbands within the MKL structure. Specifically, the emergence of a super flat isolated flatband aids in achieving single-mode omnidirectional lasers and enhancing the omnidirectional electromagnetic interaction of materials, thereby expanding the applications of moiré photonic crystals.

Funder

National Natural Science Foundation of China

Publisher

AIP Publishing

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