Ultrafast manipulation of topologically enhanced surface transport driven by mid-infrared and terahertz pulses in Bi2Se3

It remains challenging on how to selectively control terahertz conductivity at surface from the bulk contribution in topological insulators. Here, Luo et al. discover and manipulate topologically enhanced surface transport due to helical spin structure using mid-infrared and terahertz ultrafast phot...

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Autores principales: L. Luo, X. Yang, X. Liu, Z. Liu, C. Vaswani, D. Cheng, M. Mootz, X. Zhao, Y. Yao, C.-Z. Wang, K.-M. Ho, I. E. Perakis, M. Dobrowolska, J. K. Furdyna, J. Wang
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/cccd9aebc4874d9583c6a5270b0ee3b0
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spelling oai:doaj.org-article:cccd9aebc4874d9583c6a5270b0ee3b02021-12-02T17:31:37ZUltrafast manipulation of topologically enhanced surface transport driven by mid-infrared and terahertz pulses in Bi2Se310.1038/s41467-019-08559-62041-1723https://doaj.org/article/cccd9aebc4874d9583c6a5270b0ee3b02019-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08559-6https://doaj.org/toc/2041-1723It remains challenging on how to selectively control terahertz conductivity at surface from the bulk contribution in topological insulators. Here, Luo et al. discover and manipulate topologically enhanced surface transport due to helical spin structure using mid-infrared and terahertz ultrafast photoexcitations.L. LuoX. YangX. LiuZ. LiuC. VaswaniD. ChengM. MootzX. ZhaoY. YaoC.-Z. WangK.-M. HoI. E. PerakisM. DobrowolskaJ. K. FurdynaJ. WangNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
L. Luo
X. Yang
X. Liu
Z. Liu
C. Vaswani
D. Cheng
M. Mootz
X. Zhao
Y. Yao
C.-Z. Wang
K.-M. Ho
I. E. Perakis
M. Dobrowolska
J. K. Furdyna
J. Wang
Ultrafast manipulation of topologically enhanced surface transport driven by mid-infrared and terahertz pulses in Bi2Se3
description It remains challenging on how to selectively control terahertz conductivity at surface from the bulk contribution in topological insulators. Here, Luo et al. discover and manipulate topologically enhanced surface transport due to helical spin structure using mid-infrared and terahertz ultrafast photoexcitations.
format article
author L. Luo
X. Yang
X. Liu
Z. Liu
C. Vaswani
D. Cheng
M. Mootz
X. Zhao
Y. Yao
C.-Z. Wang
K.-M. Ho
I. E. Perakis
M. Dobrowolska
J. K. Furdyna
J. Wang
author_facet L. Luo
X. Yang
X. Liu
Z. Liu
C. Vaswani
D. Cheng
M. Mootz
X. Zhao
Y. Yao
C.-Z. Wang
K.-M. Ho
I. E. Perakis
M. Dobrowolska
J. K. Furdyna
J. Wang
author_sort L. Luo
title Ultrafast manipulation of topologically enhanced surface transport driven by mid-infrared and terahertz pulses in Bi2Se3
title_short Ultrafast manipulation of topologically enhanced surface transport driven by mid-infrared and terahertz pulses in Bi2Se3
title_full Ultrafast manipulation of topologically enhanced surface transport driven by mid-infrared and terahertz pulses in Bi2Se3
title_fullStr Ultrafast manipulation of topologically enhanced surface transport driven by mid-infrared and terahertz pulses in Bi2Se3
title_full_unstemmed Ultrafast manipulation of topologically enhanced surface transport driven by mid-infrared and terahertz pulses in Bi2Se3
title_sort ultrafast manipulation of topologically enhanced surface transport driven by mid-infrared and terahertz pulses in bi2se3
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/cccd9aebc4874d9583c6a5270b0ee3b0
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