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Photonic Band Gaps and Resonance Modes in 2D Twisted Moiré Photonic Crystal

Khadijah Alnasser, Steve Kamau, Noah Hurley, Jingbiao Cui, Yuankun Lin

2021Photonics13 citationsDOIOpen Access PDF

Abstract

The study of twisted bilayer 2D materials has revealed many interesting physics properties. A twisted moiré photonic crystal is an optical analog of twisted bilayer 2D materials. The optical properties in twisted photonic crystals have not yet been fully elucidated. In this paper, we generate 2D twisted moiré photonic crystals without physical rotation and simulate their photonic band gaps in photonic crystals formed at different twisted angles, different gradient levels, and different dielectric filling factors. At certain gradient levels, interface modes appear within the photonic band gap. The simulation reveals “tic tac toe”-like and “traffic circle”-like modes as well as ring resonance modes. These interesting discoveries in 2D twisted moiré photonic crystal may lead toward its application in integrated photonics.

Topics & Concepts

Photonic crystalPhotonicsYablonoviteMaterials scienceOptoelectronicsBand gapOpticsPhotonic metamaterialDielectricGuided-mode resonancePhotonic integrated circuitPhysicsDiffraction gratingWavelengthPhotonic Crystals and ApplicationsPlasmonic and Surface Plasmon ResearchPhotonic and Optical Devices