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  5. Flat Bands in Magic-Angle Bilayer Photonic Crystals at Small Twists

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Article
en
2021

Flat Bands in Magic-Angle Bilayer Photonic Crystals at Small Twists

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en
2021
Vol 126 (22)
Vol. 126
DOI: 10.1103/physrevlett.126.223601

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Junqiao Wu
Junqiao Wu

University of California, Berkeley

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Kaichen Dong
Tiancheng Zhang
Jiachen Li
+7 more

Abstract

The new physics of magic-angle twisted bilayer graphene (TBG) motivated extensive studies of flat bands hosted by moiré superlattices in van der Waals structures, inspiring the investigations into their photonic counterparts with potential applications including Bose-Einstein condensation. However, correlation between photonic flat bands and bilayer photonic moiré systems remains unexplored, impeding further development of moiré photonics. In this work, we formulate a coupled-mode theory for low-angle twisted bilayer honeycomb photonic crystals as a close analogy of TBG, discovering magic-angle photonic flat bands with a non-Anderson-type localization. Moreover, the interlayer separation constitutes a convenient degree of freedom in tuning photonic moiré bands without high pressure. A phase diagram is constructed to correlate the twist angle and separation dependencies to the photonic magic angles. Our findings reveal a salient correspondence between fermionic and bosonic moiré systems and pave the avenue toward novel applications through advanced photonic band or state engineering.

How to cite this publication

Kaichen Dong, Tiancheng Zhang, Jiachen Li, Qingjun Wang, Fuyi Yang, Yoonsoo Rho, Danqing Wang, Costas P. Grigoropoulos, Junqiao Wu, Jie Yao (2021). Flat Bands in Magic-Angle Bilayer Photonic Crystals at Small Twists. , 126(22), DOI: https://doi.org/10.1103/physrevlett.126.223601.

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Publication Details

Type

Article

Year

2021

Authors

10

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1103/physrevlett.126.223601

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