Chemical switching of low-loss phonon polaritons in α-MoO3 by hydrogen intercalation

Phonon polaritons hold promises for nanophotonic applications but external control of phonon polaritons remains challenging. Here, the authors achieve reversible and non-volatile switching of phonon polariton by modifying crystal structure and lattice vibrations via hydrogenation.

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Autores principales: Yingjie Wu, Qingdong Ou, Yuefeng Yin, Yun Li, Weiliang Ma, Wenzhi Yu, Guanyu Liu, Xiaoqiang Cui, Xiaozhi Bao, Jiahua Duan, Gonzalo Álvarez-Pérez, Zhigao Dai, Babar Shabbir, Nikhil Medhekar, Xiangping Li, Chang-Ming Li, Pablo Alonso-González, Qiaoliang Bao
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/4a361b0392964703ba329d264ebfc810
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spelling oai:doaj.org-article:4a361b0392964703ba329d264ebfc8102021-12-02T16:53:16ZChemical switching of low-loss phonon polaritons in α-MoO3 by hydrogen intercalation10.1038/s41467-020-16459-32041-1723https://doaj.org/article/4a361b0392964703ba329d264ebfc8102020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16459-3https://doaj.org/toc/2041-1723Phonon polaritons hold promises for nanophotonic applications but external control of phonon polaritons remains challenging. Here, the authors achieve reversible and non-volatile switching of phonon polariton by modifying crystal structure and lattice vibrations via hydrogenation.Yingjie WuQingdong OuYuefeng YinYun LiWeiliang MaWenzhi YuGuanyu LiuXiaoqiang CuiXiaozhi BaoJiahua DuanGonzalo Álvarez-PérezZhigao DaiBabar ShabbirNikhil MedhekarXiangping LiChang-Ming LiPablo Alonso-GonzálezQiaoliang BaoNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-8 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yingjie Wu
Qingdong Ou
Yuefeng Yin
Yun Li
Weiliang Ma
Wenzhi Yu
Guanyu Liu
Xiaoqiang Cui
Xiaozhi Bao
Jiahua Duan
Gonzalo Álvarez-Pérez
Zhigao Dai
Babar Shabbir
Nikhil Medhekar
Xiangping Li
Chang-Ming Li
Pablo Alonso-González
Qiaoliang Bao
Chemical switching of low-loss phonon polaritons in α-MoO3 by hydrogen intercalation
description Phonon polaritons hold promises for nanophotonic applications but external control of phonon polaritons remains challenging. Here, the authors achieve reversible and non-volatile switching of phonon polariton by modifying crystal structure and lattice vibrations via hydrogenation.
format article
author Yingjie Wu
Qingdong Ou
Yuefeng Yin
Yun Li
Weiliang Ma
Wenzhi Yu
Guanyu Liu
Xiaoqiang Cui
Xiaozhi Bao
Jiahua Duan
Gonzalo Álvarez-Pérez
Zhigao Dai
Babar Shabbir
Nikhil Medhekar
Xiangping Li
Chang-Ming Li
Pablo Alonso-González
Qiaoliang Bao
author_facet Yingjie Wu
Qingdong Ou
Yuefeng Yin
Yun Li
Weiliang Ma
Wenzhi Yu
Guanyu Liu
Xiaoqiang Cui
Xiaozhi Bao
Jiahua Duan
Gonzalo Álvarez-Pérez
Zhigao Dai
Babar Shabbir
Nikhil Medhekar
Xiangping Li
Chang-Ming Li
Pablo Alonso-González
Qiaoliang Bao
author_sort Yingjie Wu
title Chemical switching of low-loss phonon polaritons in α-MoO3 by hydrogen intercalation
title_short Chemical switching of low-loss phonon polaritons in α-MoO3 by hydrogen intercalation
title_full Chemical switching of low-loss phonon polaritons in α-MoO3 by hydrogen intercalation
title_fullStr Chemical switching of low-loss phonon polaritons in α-MoO3 by hydrogen intercalation
title_full_unstemmed Chemical switching of low-loss phonon polaritons in α-MoO3 by hydrogen intercalation
title_sort chemical switching of low-loss phonon polaritons in α-moo3 by hydrogen intercalation
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/4a361b0392964703ba329d264ebfc810
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