Topological disclination states and charge fractionalization in a non-hermitian lattice

We show that a non-Hermitian lattice with a disclination can host topological disclination states that are induced by on-site gain and loss. The disclination states are inherently non-Hermitian as they do not exist in the limit of zero gain or loss. They arise from charge fractionalization in the no...

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Main Authors: Banerjee, Rimi, Mandal, Subhaskar, Terh, Yun Yong, Lin, Shuxin, Liu, Gui-Geng, Zhang, Baile, Chong, Yidong
Other Authors: School of Physical and Mathematical Sciences
Format: Article
Language:English
Published: 2025
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Online Access:https://hdl.handle.net/10356/182041
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1820412025-01-06T05:12:58Z Topological disclination states and charge fractionalization in a non-hermitian lattice Banerjee, Rimi Mandal, Subhaskar Terh, Yun Yong Lin, Shuxin Liu, Gui-Geng Zhang, Baile Chong, Yidong School of Physical and Mathematical Sciences Centre for Disruptive Photonic Technologies (CDPT) Physics Biorthogonal Disclinations We show that a non-Hermitian lattice with a disclination can host topological disclination states that are induced by on-site gain and loss. The disclination states are inherently non-Hermitian as they do not exist in the limit of zero gain or loss. They arise from charge fractionalization in the non-Hermitian lattice, which we establish using non-Hermitian Wilson loops calculated with biorthogonal products. The model is suitable for realization on established experimental platforms, such as arrays of photonic or polaritonic resonators. The emergence of the topological disclination states can manifest as an abrupt shift in emission intensity and frequency with varying gain or loss. Ministry of Education (MOE) National Research Foundation (NRF) This work was supported by the National Research Foundation (NRF), Singapore under Competitive Research Programme NRF-CRP23-2019-0005 and NRF-CRP23-2019-0007, and NRF Investigatorship NRF-NRFI08-2022-0001, and by Singapore Ministry of Education Academic Research Tier 2 grant (MOET2EP50123-0007) and Tier 1 grant (RG139/22). 2025-01-06T05:12:58Z 2025-01-06T05:12:58Z 2024 Journal Article Banerjee, R., Mandal, S., Terh, Y. Y., Lin, S., Liu, G., Zhang, B. & Chong, Y. (2024). Topological disclination states and charge fractionalization in a non-hermitian lattice. Physical Review Letters, 133(23), 233804-. https://dx.doi.org/10.1103/PhysRevLett.133.233804 0031-9007 https://hdl.handle.net/10356/182041 10.1103/PhysRevLett.133.233804 39714671 2-s2.0-85211215588 23 133 233804 en NRF-CRP23-2019-0005 NRF-CRP23-2019-0007 NRF-NRFI08-2022-0001 MOE-T2EP50123-0007 RG139/22 Physical Review Letters © 2024 American Physical Society. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Physics
Biorthogonal
Disclinations
spellingShingle Physics
Biorthogonal
Disclinations
Banerjee, Rimi
Mandal, Subhaskar
Terh, Yun Yong
Lin, Shuxin
Liu, Gui-Geng
Zhang, Baile
Chong, Yidong
Topological disclination states and charge fractionalization in a non-hermitian lattice
description We show that a non-Hermitian lattice with a disclination can host topological disclination states that are induced by on-site gain and loss. The disclination states are inherently non-Hermitian as they do not exist in the limit of zero gain or loss. They arise from charge fractionalization in the non-Hermitian lattice, which we establish using non-Hermitian Wilson loops calculated with biorthogonal products. The model is suitable for realization on established experimental platforms, such as arrays of photonic or polaritonic resonators. The emergence of the topological disclination states can manifest as an abrupt shift in emission intensity and frequency with varying gain or loss.
author2 School of Physical and Mathematical Sciences
author_facet School of Physical and Mathematical Sciences
Banerjee, Rimi
Mandal, Subhaskar
Terh, Yun Yong
Lin, Shuxin
Liu, Gui-Geng
Zhang, Baile
Chong, Yidong
format Article
author Banerjee, Rimi
Mandal, Subhaskar
Terh, Yun Yong
Lin, Shuxin
Liu, Gui-Geng
Zhang, Baile
Chong, Yidong
author_sort Banerjee, Rimi
title Topological disclination states and charge fractionalization in a non-hermitian lattice
title_short Topological disclination states and charge fractionalization in a non-hermitian lattice
title_full Topological disclination states and charge fractionalization in a non-hermitian lattice
title_fullStr Topological disclination states and charge fractionalization in a non-hermitian lattice
title_full_unstemmed Topological disclination states and charge fractionalization in a non-hermitian lattice
title_sort topological disclination states and charge fractionalization in a non-hermitian lattice
publishDate 2025
url https://hdl.handle.net/10356/182041
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