Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet

Phonons with chirality determine the optical helicity of inelastic light scattering processes due to their nonzero angular momentum. Here it is shown that 2D magnetic CrBr3 hosts chiral phonons at the Brillouin-zone center. These chiral phonons are linear combinations of the doubly-degenerate Eg pho...

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Main Authors: Yin, Tingting, Ulman, Kanchan Ajit, Liu, Sheng, Granados Del Águila, Andrés, Huang, Yuqing, Zhang, Lifa, Serra, Marco, Sedmidubsky, David, Sofer, Zdenek, Quek, Su Ying, Xiong, Qihua
Other Authors: School of Physical and Mathematical Sciences
Format: Article
Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/152378
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1523782023-02-28T19:58:34Z Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet Yin, Tingting Ulman, Kanchan Ajit Liu, Sheng Granados Del Águila, Andrés Huang, Yuqing Zhang, Lifa Serra, Marco Sedmidubsky, David Sofer, Zdenek Quek, Su Ying Xiong, Qihua School of Physical and Mathematical Sciences Division of Physics and Applied Physics Science::Physics Chiral Phonons Pseudoangular Momentum Phonons with chirality determine the optical helicity of inelastic light scattering processes due to their nonzero angular momentum. Here it is shown that 2D magnetic CrBr3 hosts chiral phonons at the Brillouin-zone center. These chiral phonons are linear combinations of the doubly-degenerate Eg phonons, and the phonon eigenmodes exhibit clockwise and counterclockwise rotational vibrations corresponding to angular momenta of l = ± 1. Such Eg chiral phonons completely switch the polarization of incident circularly polarized light. On the other hand, the non-degenerate non-chiral Ag phonons display a giant magneto-optical effect under an external out-of-plane magnetic field, rotating the plane of polarization of the scattered linearly polarized light. The corresponding degree of polarization of the scattered light changes from 91% to -68% as the magnetic field strength increases from 0 to 5 T. In contrast, the chiral Eg modes display no field dependence. The results lay a foundation for the study of phonon chirality and magneto-optical phenomena in 2D magnetic materials, as well as their related applications, such as the phonon Hall effect, topological photonics, and Raman lasing. Ministry of Education (MOE) National Research Foundation (NRF) National Supercomputing Centre (NSCC) Singapore Accepted version Q.X. gratefully acknowledges National Natural Science Foundation of China (No. 12 020 101 003) and start-up grant from Tsinghua University. T.Y. acknowledges the support from the Singapore National Research Foundation via Competitive Research Programme (NRF-CRP-21-2018-0007) S.Y.Q. and K.A.U. acknowledge support from the Singapore National Research Foundation, Prime Minister’s Office, under its medium-sized centre program. Computations were performed on the NUS Graphene Research Centre cluster and National Supercomputing Centre Singapore (NSCC). K.A.U. acknowledges support from the Provost’s Office and from the Ministry of Education in Singapore under grants MOE2016-T2-2-132 and MOE2017-T2-2-139. Z.S. was supported by project LTAUSA19034 from Ministry of Education Youth and Sports (MEYS). 2021-10-06T06:29:39Z 2021-10-06T06:29:39Z 2021 Journal Article Yin, T., Ulman, K. A., Liu, S., Granados Del Águila, A., Huang, Y., Zhang, L., Serra, M., Sedmidubsky, D., Sofer, Z., Quek, S. Y. & Xiong, Q. (2021). Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet. Advanced Materials, 33(36), 2101618-. https://dx.doi.org/10.1002/adma.202101618 0935-9648 https://hdl.handle.net/10356/152378 10.1002/adma.202101618 34302389 2-s2.0-85111093765 36 33 2101618 en NRF-CRP-21-2018-0007 MOE2016-T2-2-132 MOE2017-T2-2-139 Advanced Materials This is the peer reviewed version of the following article: Yin, T., Ulman, K. A., Liu, S., Granados Del Águila, A., Huang, Y., Zhang, L., Serra, M., Sedmidubsky, D., Sofer, Z., Quek, S. Y. & Xiong, Q. (2021). Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet. Advanced Materials, 33(36), 2101618-, which has been published in final form at https://dx.doi.org/10.1002/adma.202101618. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Physics
Chiral Phonons
Pseudoangular Momentum
spellingShingle Science::Physics
Chiral Phonons
Pseudoangular Momentum
Yin, Tingting
Ulman, Kanchan Ajit
Liu, Sheng
Granados Del Águila, Andrés
Huang, Yuqing
Zhang, Lifa
Serra, Marco
Sedmidubsky, David
Sofer, Zdenek
Quek, Su Ying
Xiong, Qihua
Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet
description Phonons with chirality determine the optical helicity of inelastic light scattering processes due to their nonzero angular momentum. Here it is shown that 2D magnetic CrBr3 hosts chiral phonons at the Brillouin-zone center. These chiral phonons are linear combinations of the doubly-degenerate Eg phonons, and the phonon eigenmodes exhibit clockwise and counterclockwise rotational vibrations corresponding to angular momenta of l = ± 1. Such Eg chiral phonons completely switch the polarization of incident circularly polarized light. On the other hand, the non-degenerate non-chiral Ag phonons display a giant magneto-optical effect under an external out-of-plane magnetic field, rotating the plane of polarization of the scattered linearly polarized light. The corresponding degree of polarization of the scattered light changes from 91% to -68% as the magnetic field strength increases from 0 to 5 T. In contrast, the chiral Eg modes display no field dependence. The results lay a foundation for the study of phonon chirality and magneto-optical phenomena in 2D magnetic materials, as well as their related applications, such as the phonon Hall effect, topological photonics, and Raman lasing.
author2 School of Physical and Mathematical Sciences
author_facet School of Physical and Mathematical Sciences
Yin, Tingting
Ulman, Kanchan Ajit
Liu, Sheng
Granados Del Águila, Andrés
Huang, Yuqing
Zhang, Lifa
Serra, Marco
Sedmidubsky, David
Sofer, Zdenek
Quek, Su Ying
Xiong, Qihua
format Article
author Yin, Tingting
Ulman, Kanchan Ajit
Liu, Sheng
Granados Del Águila, Andrés
Huang, Yuqing
Zhang, Lifa
Serra, Marco
Sedmidubsky, David
Sofer, Zdenek
Quek, Su Ying
Xiong, Qihua
author_sort Yin, Tingting
title Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet
title_short Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet
title_full Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet
title_fullStr Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet
title_full_unstemmed Chiral phonons and giant magneto-optical effect in CrBr₃ 2D magnet
title_sort chiral phonons and giant magneto-optical effect in crbr₃ 2d magnet
publishDate 2021
url https://hdl.handle.net/10356/152378
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