Photoconductivity in Magnetic Field of р-Type Cadmium – Mercury – Tellurium Films Grown by Liquid Phase Epitaxy


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Abstract

Photoconductivity in a magnetic field is studied for Faraday geometry on the p-type cadmium – mercury –tellurium films grown by liquid-phase epitaxy on cadmium – zinc – tellurium substrates. From the magnetic-field dependence of the photoconductivity signal under the film illumination from the side of the substrate or from the side of free surface, different values of mobility of minority carriers (electrons) are obtained. It is shown that for the mathematical description of the photoconductivity signal in a magnetic field, two types of electrons – “fast” and “slow” electrons, as well as “heavy” holes can be used.

About the authors

V. Ya. Kostyuchenko

Novosibirsk State Technical University

Author for correspondence.
Email: v.y.kostuk@ssga.ru
Russian Federation, Novosibirsk

D. Yu. Protasov

A. V. Rzhanov Institute of Semiconductor Physics of Siberian Branch of the Russian Academy of Sciences

Email: v.y.kostuk@ssga.ru
Russian Federation, Novosibirsk

Yu. B. Andrusov

State Research and Design Institute of Rare Metal Industry “Giredmet”

Email: v.y.kostuk@ssga.ru
Russian Federation, Moscow

I. A. Denisov

State Research and Design Institute of Rare Metal Industry “Giredmet”

Email: v.y.kostuk@ssga.ru
Russian Federation, Moscow

A. V. Voitsekhovskii

National Research Tomsk State University

Email: v.y.kostuk@ssga.ru
Russian Federation, Tomsk

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