A robust and tuneable mid-infrared optical switch enabled by bulk Dirac fermions

Mid-infrared pulsed sources are technologically important for sensing and spectroscopy but their implementation is challenging due to the lack of a tuneable optical switch. Here, the authors address this limitation by engineering the band structure of an emerging Dirac semimetal, Cd3As2.

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Autores principales: Chunhui Zhu, Fengqiu Wang, Yafei Meng, Xiang Yuan, Faxian Xiu, Hongyu Luo, Yazhou Wang, Jianfeng Li, Xinjie Lv, Liang He, Yongbing Xu, Junfeng Liu, Chao Zhang, Yi Shi, Rong Zhang, Shining Zhu
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/dba4438022af42588cc66a08dd35a8b0
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spelling oai:doaj.org-article:dba4438022af42588cc66a08dd35a8b02021-12-02T15:39:03ZA robust and tuneable mid-infrared optical switch enabled by bulk Dirac fermions10.1038/ncomms141112041-1723https://doaj.org/article/dba4438022af42588cc66a08dd35a8b02017-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms14111https://doaj.org/toc/2041-1723Mid-infrared pulsed sources are technologically important for sensing and spectroscopy but their implementation is challenging due to the lack of a tuneable optical switch. Here, the authors address this limitation by engineering the band structure of an emerging Dirac semimetal, Cd3As2.Chunhui ZhuFengqiu WangYafei MengXiang YuanFaxian XiuHongyu LuoYazhou WangJianfeng LiXinjie LvLiang HeYongbing XuJunfeng LiuChao ZhangYi ShiRong ZhangShining ZhuNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Chunhui Zhu
Fengqiu Wang
Yafei Meng
Xiang Yuan
Faxian Xiu
Hongyu Luo
Yazhou Wang
Jianfeng Li
Xinjie Lv
Liang He
Yongbing Xu
Junfeng Liu
Chao Zhang
Yi Shi
Rong Zhang
Shining Zhu
A robust and tuneable mid-infrared optical switch enabled by bulk Dirac fermions
description Mid-infrared pulsed sources are technologically important for sensing and spectroscopy but their implementation is challenging due to the lack of a tuneable optical switch. Here, the authors address this limitation by engineering the band structure of an emerging Dirac semimetal, Cd3As2.
format article
author Chunhui Zhu
Fengqiu Wang
Yafei Meng
Xiang Yuan
Faxian Xiu
Hongyu Luo
Yazhou Wang
Jianfeng Li
Xinjie Lv
Liang He
Yongbing Xu
Junfeng Liu
Chao Zhang
Yi Shi
Rong Zhang
Shining Zhu
author_facet Chunhui Zhu
Fengqiu Wang
Yafei Meng
Xiang Yuan
Faxian Xiu
Hongyu Luo
Yazhou Wang
Jianfeng Li
Xinjie Lv
Liang He
Yongbing Xu
Junfeng Liu
Chao Zhang
Yi Shi
Rong Zhang
Shining Zhu
author_sort Chunhui Zhu
title A robust and tuneable mid-infrared optical switch enabled by bulk Dirac fermions
title_short A robust and tuneable mid-infrared optical switch enabled by bulk Dirac fermions
title_full A robust and tuneable mid-infrared optical switch enabled by bulk Dirac fermions
title_fullStr A robust and tuneable mid-infrared optical switch enabled by bulk Dirac fermions
title_full_unstemmed A robust and tuneable mid-infrared optical switch enabled by bulk Dirac fermions
title_sort robust and tuneable mid-infrared optical switch enabled by bulk dirac fermions
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/dba4438022af42588cc66a08dd35a8b0
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