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Lightwave control of the valley pseudospin in a monolayer of tungsten diselenide

Authors :
Jaroslav Fabian
U. Huttner
Martin Gmitra
Christian Schüller
Rupert Huber
Mackillo Kira
S. Schlauderer
J. T. Steiner
Philipp Nagler
P. G. Hawkins
Tobias Korn
F. Langer
C. P. Schmid
Stephan W. Koch
Source :
EPJ Web of Conferences, Vol 205, p 05011 (2019)
Publication Year :
2019
Publisher :
EDP Sciences, 2019.

Abstract

As conventional electronic is approaching its ultimate limits, tremendous efforts have been taken to explore novel concepts of ultrafast quantum control. Lightwave electronics - the foundation of attosecond science - has opened a spectacular perspective by utilizing the oscillating carrier wave of an intense light pulse to control the translational motion of the electron’s charge faster than a single cycle of light [1-7]. Despite their promising potential as future information carriers [8,10], the internal quantum attributes such as spins and valley pseudospins have not been switchable at optical clock rates. Here we demonstrate a novel subcycle control scheme of the electron’s pseudospin in a monolayer of tungsten diselenide using strong mid-infrared lightwaves [9]. Our work opens the door towards systematic valleytronic protocols at optical clock rates.

Details

ISSN :
2100014X
Volume :
205
Database :
OpenAIRE
Journal :
EPJ Web of Conferences
Accession number :
edsair.doi.dedup.....bf8563c98961b8d6d2ec25e6f2541d6d
Full Text :
https://doi.org/10.1051/epjconf/201920505011