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Gate tunable terahertz cyclotron emission from two-dimensional Dirac fermions

Authors :
B. Benhamou-Bui
C. Consejo
S. S. Krishtopenko
M. Szola
K. Maussang
S. Ruffenach
E. Chauveau
S. Benlemqwanssa
C. Bray
X. Baudry
P. Ballet
S. V. Morozov
V. I. Gavrilenko
N. N. Mikhailov
S. A. Dvoretskii
B. Jouault
J. Torres
F. Teppe
Source :
APL Photonics, Vol 8, Iss 11, Pp 116106-116106-6 (2023)
Publication Year :
2023
Publisher :
AIP Publishing LLC, 2023.

Abstract

Two-dimensional Dirac fermions in HgTe quantum wells close to the topological phase transition can generate significant cyclotron emission that is magnetic field tunable in the terahertz frequency range. Due to their relativistic-like dynamics, their cyclotron mass is strongly dependent on their electron concentration in the quantum well, providing a second tunability lever and paving the way for a gate-tunable, permanent-magnet Landau laser. In this work, we demonstrate the proof-of-concept of such a back-gate tunable THz cyclotron emitter at a fixed magnetic field. The emission frequency detected at 1.5 T is centered at 2.2 THz and can already be electrically tuned over 250 GHz. With an optimized gate and a realistic permanent magnet of 1.0 T, we estimate that the cyclotron emission could be continuously and rapidly tunable by the gate bias between 1 and 3 THz, that is to say on the less covered part of the THz gap.

Details

Language :
English
ISSN :
23780967
Volume :
8
Issue :
11
Database :
Directory of Open Access Journals
Journal :
APL Photonics
Publication Type :
Academic Journal
Accession number :
edsdoj.0b9f9eee864e5fb0e0bc1ac489e0cc
Document Type :
article
Full Text :
https://doi.org/10.1063/5.0168578