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Tunable layered-magnetism–assisted magneto-Raman effect in a two-dimensional magnet CrI(3)

We used a combination of polarized Raman spectroscopy experiment and model magnetism–phonon coupling calculations to study the rich magneto-Raman effect in the two-dimensional (2D) magnet CrI(3). We reveal a layered-magnetism–assisted phonon scattering mechanism below the magnetic onset temperature,...

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Autores principales: Jin, Wencan, Ye, Zhipeng, Luo, Xiangpeng, Yang, Bowen, Ye, Gaihua, Yin, Fangzhou, Kim, Hyun Ho, Rojas, Laura, Tian, Shangjie, Fu, Yang, Yan, Shaohua, Lei, Hechang, Sun, Kai, Tsen, Adam W., He, Rui, Zhao, Liuyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7547278/
https://www.ncbi.nlm.nih.gov/pubmed/32968024
http://dx.doi.org/10.1073/pnas.2012980117
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author Jin, Wencan
Ye, Zhipeng
Luo, Xiangpeng
Yang, Bowen
Ye, Gaihua
Yin, Fangzhou
Kim, Hyun Ho
Rojas, Laura
Tian, Shangjie
Fu, Yang
Yan, Shaohua
Lei, Hechang
Sun, Kai
Tsen, Adam W.
He, Rui
Zhao, Liuyan
author_facet Jin, Wencan
Ye, Zhipeng
Luo, Xiangpeng
Yang, Bowen
Ye, Gaihua
Yin, Fangzhou
Kim, Hyun Ho
Rojas, Laura
Tian, Shangjie
Fu, Yang
Yan, Shaohua
Lei, Hechang
Sun, Kai
Tsen, Adam W.
He, Rui
Zhao, Liuyan
author_sort Jin, Wencan
collection PubMed
description We used a combination of polarized Raman spectroscopy experiment and model magnetism–phonon coupling calculations to study the rich magneto-Raman effect in the two-dimensional (2D) magnet CrI(3). We reveal a layered-magnetism–assisted phonon scattering mechanism below the magnetic onset temperature, whose Raman excitation breaks time-reversal symmetry, has an antisymmetric Raman tensor, and follows the magnetic phase transitions across critical magnetic fields, on top of the presence of the conventional phonon scattering with symmetric Raman tensors in N-layer CrI(3). We resolve in data and by calculations that the first-order A(g) phonon of the monolayer splits into an N-fold multiplet in N-layer CrI(3) due to the interlayer coupling [Formula: see text] and that the phonons within the multiplet show distinct magnetic field dependence because of their different layered-magnetism–phonon coupling. We further find that such a layered-magnetism–phonon coupled Raman scattering mechanism extends beyond first-order to higher-order multiphonon scattering processes. Our results on the magneto-Raman effect of the first-order phonons in the multiplet and the higher-order multiphonons in N-layer CrI(3) demonstrate the rich and strong behavior of emergent magneto-optical effects in 2D magnets and underline the unique opportunities of spin–phonon physics in van der Waals layered magnets.
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spelling pubmed-75472782020-10-22 Tunable layered-magnetism–assisted magneto-Raman effect in a two-dimensional magnet CrI(3) Jin, Wencan Ye, Zhipeng Luo, Xiangpeng Yang, Bowen Ye, Gaihua Yin, Fangzhou Kim, Hyun Ho Rojas, Laura Tian, Shangjie Fu, Yang Yan, Shaohua Lei, Hechang Sun, Kai Tsen, Adam W. He, Rui Zhao, Liuyan Proc Natl Acad Sci U S A Physical Sciences We used a combination of polarized Raman spectroscopy experiment and model magnetism–phonon coupling calculations to study the rich magneto-Raman effect in the two-dimensional (2D) magnet CrI(3). We reveal a layered-magnetism–assisted phonon scattering mechanism below the magnetic onset temperature, whose Raman excitation breaks time-reversal symmetry, has an antisymmetric Raman tensor, and follows the magnetic phase transitions across critical magnetic fields, on top of the presence of the conventional phonon scattering with symmetric Raman tensors in N-layer CrI(3). We resolve in data and by calculations that the first-order A(g) phonon of the monolayer splits into an N-fold multiplet in N-layer CrI(3) due to the interlayer coupling [Formula: see text] and that the phonons within the multiplet show distinct magnetic field dependence because of their different layered-magnetism–phonon coupling. We further find that such a layered-magnetism–phonon coupled Raman scattering mechanism extends beyond first-order to higher-order multiphonon scattering processes. Our results on the magneto-Raman effect of the first-order phonons in the multiplet and the higher-order multiphonons in N-layer CrI(3) demonstrate the rich and strong behavior of emergent magneto-optical effects in 2D magnets and underline the unique opportunities of spin–phonon physics in van der Waals layered magnets. National Academy of Sciences 2020-10-06 2020-09-23 /pmc/articles/PMC7547278/ /pubmed/32968024 http://dx.doi.org/10.1073/pnas.2012980117 Text en Copyright © 2020 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Physical Sciences
Jin, Wencan
Ye, Zhipeng
Luo, Xiangpeng
Yang, Bowen
Ye, Gaihua
Yin, Fangzhou
Kim, Hyun Ho
Rojas, Laura
Tian, Shangjie
Fu, Yang
Yan, Shaohua
Lei, Hechang
Sun, Kai
Tsen, Adam W.
He, Rui
Zhao, Liuyan
Tunable layered-magnetism–assisted magneto-Raman effect in a two-dimensional magnet CrI(3)
title Tunable layered-magnetism–assisted magneto-Raman effect in a two-dimensional magnet CrI(3)
title_full Tunable layered-magnetism–assisted magneto-Raman effect in a two-dimensional magnet CrI(3)
title_fullStr Tunable layered-magnetism–assisted magneto-Raman effect in a two-dimensional magnet CrI(3)
title_full_unstemmed Tunable layered-magnetism–assisted magneto-Raman effect in a two-dimensional magnet CrI(3)
title_short Tunable layered-magnetism–assisted magneto-Raman effect in a two-dimensional magnet CrI(3)
title_sort tunable layered-magnetism–assisted magneto-raman effect in a two-dimensional magnet cri(3)
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7547278/
https://www.ncbi.nlm.nih.gov/pubmed/32968024
http://dx.doi.org/10.1073/pnas.2012980117
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