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Topological polaritons and photonic magic angles in twisted α-MoO3 bilayers.

Authors :
Hu, Guangwei
Ou, Qingdong
Si, Guangyuan
Wu, Yingjie
Wu, Jing
Dai, Zhigao
Krasnok, Alex
Mazor, Yarden
Zhang, Qing
Bao, Qiaoliang
Qiu, Cheng-Wei
Alù, Andrea
Source :
Nature; 6/11/2020, Vol. 582 Issue 7811, p209-213, 5p
Publication Year :
2020

Abstract

Twisted two-dimensional bilayer materials exhibit many exotic electronic phenomena. Manipulating the ‘twist angle’ between the two layers enables fine control of the electronic band structure, resulting in magic-angle flat-band superconductivity1,2, the formation of moiré excitons3–8 and interlayer magnetism9. However, there are limited demonstrations of such concepts for photons. Here we show how analogous principles, combined with extreme anisotropy, enable control and manipulation of the photonic dispersion of phonon polaritons in van der Waals bilayers. We experimentally observe tunable topological transitions from open (hyperbolic) to closed (elliptical) dispersion contours in bilayers of α-phase molybdenum trioxide (α-MoO<subscript>3</subscript>), arising when the rotation between the layers is at a photonic magic twist angle. These transitions are induced by polariton hybridization and are controlled by a topological quantity. At the transitions the bilayer dispersion flattens, exhibiting low-loss tunable polariton canalization and diffractionless propagation with a resolution of less than λ<subscript>0</subscript>/40, where λ<subscript>0</subscript> is the free-space wavelength. Our findings extend twistronics10 and moiré physics to nanophotonics and polaritonics, with potential applications in nanoimaging, nanoscale light propagation, energy transfer and quantum physics.The photonic dispersion of phonon polaritons in bilayers of α-phase molybdenum trioxide can undergo tunable topological transitions at magic interlayer twist angles. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00280836
Volume :
582
Issue :
7811
Database :
Complementary Index
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
143731516
Full Text :
https://doi.org/10.1038/s41586-020-2359-9