Bipolar persistent photoconductivity in HgTe/CdHgTe double quantum well heterostructures and its application for reversible change in the conductivity type

Author:

Nikolaev Ilya1,Kazakov Aleksei1ORCID,Drozdov Konstantin1ORCID,Bannikov Mikhail2,Spirin Kirill2ORCID,Menshchikov Roman3,Dvoretsky Sergey3,Mikhailov Nikolay3,Khokhlov Dmitry1,Ikonnikov Anton1ORCID

Affiliation:

1. Physics Department, M.V. Lomonosov Moscow State University, Moscow 119991, Russia

2. P.N. Lebedev Physical Institute of RAS, Moscow 119991, Russia

3. A.V. Rzhanov Institute of Semiconductors Physics, Siberian Branch of RAS, Novosibirsk 630090, Russia

Abstract

We report a detailed study of the bipolar persistent photoconductivity in an HgTe/CdHgTe double quantum well (DQW), which can be a perspective for studying topological states in these structures. Photoconductivity spectra measurements in the range of 1.1–3.1 eV as well as transport measurements under different illumination conditions were performed at T = 4.2 K. Based on the results, the processes occurring in the structure under illumination and leading to a change in the carrier concentration in the DQW have been established. They include interband generation in the CdTe cap layer and in the CdHgTe barrier layer and electron transitions from the spin-split band in the CdHgTe barrier layer to the conduction band in the CdTe cap layer. The presence of the CdTe cap layer and the appropriate cadmium fraction in the CdHgTe barrier layers have been shown to be the main factors determining the key features of the spectra. Finally, we suggest an effective method of controlling the conductivity type of HgTe/CdHgTe structures using light with different wavelengths.

Funder

Russian Science Foundation

Foundation for the Advancement of Theoretical Physics and Mathematics

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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