Spin-polarized antichiral exciton-polariton edge states
We consider theoretically a system of exciton-polariton micropillars arranged in a honeycomb lattice. The naturally present TE-TM splitting and an alternating Zeeman splitting, where the different sublattices experience opposite Zeeman splitting, shifts the Dirac points in energy, giving rise to...
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sg-ntu-dr.10356-1687022023-06-19T15:34:47Z Spin-polarized antichiral exciton-polariton edge states Bao, Ruiqi Mandal, Subhaskar Xu, Huawen Xu, Xingran Banerjee, Rimi Liew, Timothy Chi Hin School of Physical and Mathematical Sciences Science::Physics Excitons Honeycomb Structures We consider theoretically a system of exciton-polariton micropillars arranged in a honeycomb lattice. The naturally present TE-TM splitting and an alternating Zeeman splitting, where the different sublattices experience opposite Zeeman splitting, shifts the Dirac points in energy, giving rise to antichiral behavior. In a strip geometry having zigzag edges, two pairs of edge states exist and propagate in the same direction (including the states at the opposite edges). The edge modes localized at the opposite edges have opposite spins (circular polarizations), which leads to co-propagating "+-" spin channels. The antichiral edge states are protected by non-zero winding numbers and can propagate around a 60 degree bend without being reflected. We further compare the transport properties of these edge states with chiral edge modes and propose a scheme to realize them experimentally. Ministry of Education (MOE) Published version The work was supported by the Ministry of Education, Singapore (Grant No. MOE2019-T2-1-004). 2023-06-15T06:36:07Z 2023-06-15T06:36:07Z 2022 Journal Article Bao, R., Mandal, S., Xu, H., Xu, X., Banerjee, R. & Liew, T. C. H. (2022). Spin-polarized antichiral exciton-polariton edge states. Physical Review B, 106(23), 235310-. https://dx.doi.org/10.1103/PhysRevB.106.235310 1098-0121 https://hdl.handle.net/10356/168702 10.1103/PhysRevB.106.235310 2-s2.0-85144323449 23 106 235310 en MOE2019-T2-1-004 Physical Review B © 2022 American Physical Society. All rights reserved. This paper was published in Physical Review B and is made available with permission of American Physical Society. application/pdf |
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Science::Physics Excitons Honeycomb Structures Bao, Ruiqi Mandal, Subhaskar Xu, Huawen Xu, Xingran Banerjee, Rimi Liew, Timothy Chi Hin Spin-polarized antichiral exciton-polariton edge states |
description |
We consider theoretically a system of exciton-polariton micropillars arranged
in a honeycomb lattice. The naturally present TE-TM splitting and an
alternating Zeeman splitting, where the different sublattices experience
opposite Zeeman splitting, shifts the Dirac points in energy, giving rise to
antichiral behavior. In a strip geometry having zigzag edges, two pairs of edge
states exist and propagate in the same direction (including the states at the
opposite edges). The edge modes localized at the opposite edges have opposite
spins (circular polarizations), which leads to co-propagating "+-" spin
channels. The antichiral edge states are protected by non-zero winding numbers
and can propagate around a 60 degree bend without being reflected. We further
compare the transport properties of these edge states with chiral edge modes
and propose a scheme to realize them experimentally. |
author2 |
School of Physical and Mathematical Sciences |
author_facet |
School of Physical and Mathematical Sciences Bao, Ruiqi Mandal, Subhaskar Xu, Huawen Xu, Xingran Banerjee, Rimi Liew, Timothy Chi Hin |
format |
Article |
author |
Bao, Ruiqi Mandal, Subhaskar Xu, Huawen Xu, Xingran Banerjee, Rimi Liew, Timothy Chi Hin |
author_sort |
Bao, Ruiqi |
title |
Spin-polarized antichiral exciton-polariton edge states |
title_short |
Spin-polarized antichiral exciton-polariton edge states |
title_full |
Spin-polarized antichiral exciton-polariton edge states |
title_fullStr |
Spin-polarized antichiral exciton-polariton edge states |
title_full_unstemmed |
Spin-polarized antichiral exciton-polariton edge states |
title_sort |
spin-polarized antichiral exciton-polariton edge states |
publishDate |
2023 |
url |
https://hdl.handle.net/10356/168702 |
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1772829144404459520 |