RUS  ENG
Full version
JOURNALS // Pis'ma v Zhurnal Èksperimental'noi i Teoreticheskoi Fiziki // Archive

Pis'ma v Zh. Èksper. Teoret. Fiz., 2024 Volume 119, Issue 12, Pages 925–931 (Mi jetpl7257)

CONDENSED MATTER

Microwave photoconductivity of gapless Dirac fermions in HgTe quantum wells

N. S. Kuzminab, A. S. Jaroshevicha, L. S. Braginskiiab, M. V. Entinba, Z. D. Kvonab, N. N. Mikhailovab

a Rzhanov Institute of Semiconductor Physics, Siberian Branch, Russian Academy of Sciences, Novosibirsk, 630090 Russia
b Novosibirsk State University, Novosibirsk, 630090 Russia

Abstract: The microwave photoconductivity of a system of gapless Dirac fermions in HgTe quantum wells with a critical thickness has been experimentally and theoretically investigated. It has been found that the photoconductivity fluctuates depending on the gate voltage near the Dirac point, and the fluctuation amplitude increases with an increase in the conductor size and a decrease in temperature. A theoretical explanation of the microwave response based on the assumption of the existence of a percolation two-dimensional fractal network of helical edge current states induced by fluctuations in the well thickness near the critical value has been proposed. It has been shown that the microwave photoconductivity of this network fluctuates with a change in the Fermi energy and the behavior of the fluctuation amplitude is in qualitative agreement with the corresponding experimental data.

Received: 09.04.2024
Revised: 21.05.2024
Accepted: 21.05.2024

DOI: 10.31857/S1234567824120097


 English version:
Journal of Experimental and Theoretical Physics Letters, 2024, 119:12, 950–956


© Steklov Math. Inst. of RAS, 2025