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Phonon‐Related Monochromatic THz Radiation and its Magneto‐Modulation in 2D Ferromagnetic Cr(2)Ge(2)Te(6)

Searching multiple types of terahertz (THz) irradiation source is crucial for the THz technology. In addition to the conventional fermionic cases, bosonic quasi‐/particles also promise energy‐efficient THz wave emission. Here, by utilizing a 2D ferromagnetic Cr(2)Ge(2)Te(6) crystal, first a phonon‐r...

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Autores principales: Cheng, Long, Li, Huiping, Lin, Gaoting, Yan, Jian, Zhang, Lei, Yang, Cheng, Tong, Wei, Ren, Zhuang, Zhu, Wang, Cong, Xin, Gao, Jingjing, Tan, Pingheng, Luo, Xuan, sun, Yuping, Zhu, Wenguang, Sheng, Zhigao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8728850/
https://www.ncbi.nlm.nih.gov/pubmed/34716689
http://dx.doi.org/10.1002/advs.202103229
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author Cheng, Long
Li, Huiping
Lin, Gaoting
Yan, Jian
Zhang, Lei
Yang, Cheng
Tong, Wei
Ren, Zhuang
Zhu, Wang
Cong, Xin
Gao, Jingjing
Tan, Pingheng
Luo, Xuan
sun, Yuping
Zhu, Wenguang
Sheng, Zhigao
author_facet Cheng, Long
Li, Huiping
Lin, Gaoting
Yan, Jian
Zhang, Lei
Yang, Cheng
Tong, Wei
Ren, Zhuang
Zhu, Wang
Cong, Xin
Gao, Jingjing
Tan, Pingheng
Luo, Xuan
sun, Yuping
Zhu, Wenguang
Sheng, Zhigao
author_sort Cheng, Long
collection PubMed
description Searching multiple types of terahertz (THz) irradiation source is crucial for the THz technology. In addition to the conventional fermionic cases, bosonic quasi‐/particles also promise energy‐efficient THz wave emission. Here, by utilizing a 2D ferromagnetic Cr(2)Ge(2)Te(6) crystal, first a phonon‐related magneto‐tunable monochromatic THz irradiation source is demonstrated. With a low‐photonic‐energy broadband THz pump, a strong THz irradiation with frequency ≈0.9 THz and bandwidth ≈0.25 THz can be generated and its conversion efficiency could even reach 2.1% at 160 K. Moreover, it is intriguing to find that such monochromatic THz irradiation can be efficiently modulated by external magnetic field below 160 K. According to both experimental and theoretical analyses, the emergent THz irradiation is identified as the emission from the phonon‐polariton and its temperature and magnetic field dependent behaviors confirm the large spin‐lattice coupling in this 2D ferromagnetic crystal. These observations provide a new route for the creation of tunable monochromatic THz source which may have great practical interests in future applications in photonic and spintronic devices.
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spelling pubmed-87288502022-01-11 Phonon‐Related Monochromatic THz Radiation and its Magneto‐Modulation in 2D Ferromagnetic Cr(2)Ge(2)Te(6) Cheng, Long Li, Huiping Lin, Gaoting Yan, Jian Zhang, Lei Yang, Cheng Tong, Wei Ren, Zhuang Zhu, Wang Cong, Xin Gao, Jingjing Tan, Pingheng Luo, Xuan sun, Yuping Zhu, Wenguang Sheng, Zhigao Adv Sci (Weinh) Research Articles Searching multiple types of terahertz (THz) irradiation source is crucial for the THz technology. In addition to the conventional fermionic cases, bosonic quasi‐/particles also promise energy‐efficient THz wave emission. Here, by utilizing a 2D ferromagnetic Cr(2)Ge(2)Te(6) crystal, first a phonon‐related magneto‐tunable monochromatic THz irradiation source is demonstrated. With a low‐photonic‐energy broadband THz pump, a strong THz irradiation with frequency ≈0.9 THz and bandwidth ≈0.25 THz can be generated and its conversion efficiency could even reach 2.1% at 160 K. Moreover, it is intriguing to find that such monochromatic THz irradiation can be efficiently modulated by external magnetic field below 160 K. According to both experimental and theoretical analyses, the emergent THz irradiation is identified as the emission from the phonon‐polariton and its temperature and magnetic field dependent behaviors confirm the large spin‐lattice coupling in this 2D ferromagnetic crystal. These observations provide a new route for the creation of tunable monochromatic THz source which may have great practical interests in future applications in photonic and spintronic devices. John Wiley and Sons Inc. 2021-10-29 /pmc/articles/PMC8728850/ /pubmed/34716689 http://dx.doi.org/10.1002/advs.202103229 Text en © 2021 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Cheng, Long
Li, Huiping
Lin, Gaoting
Yan, Jian
Zhang, Lei
Yang, Cheng
Tong, Wei
Ren, Zhuang
Zhu, Wang
Cong, Xin
Gao, Jingjing
Tan, Pingheng
Luo, Xuan
sun, Yuping
Zhu, Wenguang
Sheng, Zhigao
Phonon‐Related Monochromatic THz Radiation and its Magneto‐Modulation in 2D Ferromagnetic Cr(2)Ge(2)Te(6)
title Phonon‐Related Monochromatic THz Radiation and its Magneto‐Modulation in 2D Ferromagnetic Cr(2)Ge(2)Te(6)
title_full Phonon‐Related Monochromatic THz Radiation and its Magneto‐Modulation in 2D Ferromagnetic Cr(2)Ge(2)Te(6)
title_fullStr Phonon‐Related Monochromatic THz Radiation and its Magneto‐Modulation in 2D Ferromagnetic Cr(2)Ge(2)Te(6)
title_full_unstemmed Phonon‐Related Monochromatic THz Radiation and its Magneto‐Modulation in 2D Ferromagnetic Cr(2)Ge(2)Te(6)
title_short Phonon‐Related Monochromatic THz Radiation and its Magneto‐Modulation in 2D Ferromagnetic Cr(2)Ge(2)Te(6)
title_sort phonon‐related monochromatic thz radiation and its magneto‐modulation in 2d ferromagnetic cr(2)ge(2)te(6)
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8728850/
https://www.ncbi.nlm.nih.gov/pubmed/34716689
http://dx.doi.org/10.1002/advs.202103229
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