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

Authors :
Yongxin Yao
Chirag Vaswani
Jigang Wang
Zhiyan Liu
Kai-Ming Ho
Xu Yang
Ilias E. Perakis
Di Cheng
M. Mootz
M. Dobrowolska
Xin Zhao
Xiaofeng Liu
Jacek K. Furdyna
Liang Luo
Cai-Zhuang Wang
Source :
Nature Communications, Nature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
Publication Year :
2019
Publisher :
Nature Publishing Group UK, 2019.

Abstract

Topology-protected surface transport of ultimate thinness in three-dimensional topological insulators (TIs) is breaking new ground in quantum science and technology. Yet a challenge remains on how to disentangle and selectively control surface helical spin transport from the bulk contribution. Here we use the mid-infrared and terahertz (THz) photoexcitation of exclusive intraband transitions to enable ultrafast manipulation of surface THz conductivity in Bi2Se3. The unique, transient electronic state is characterized by frequency-dependent carrier relaxations that directly distinguish the faster surface channel than the bulk with no complication from interband excitations or need for reduced bulk doping. We determine the topological enhancement ratio between bulk and surface scattering rates, i.e., γBS/γSS ~3.80 in equilibrium. The ultra-broadband, wavelength-selective pumping may be applied to emerging topological semimetals for separation and control of the protected transport connected with the Weyl nodes from other bulk bands.<br />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.

Details

Language :
English
ISSN :
20411723
Volume :
10
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....51f49ad21e56319a6c0a1357409a6255