Electron–Phonon Interaction in Quantum Wells Based on Uniaxial Materials

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

The interaction of charged particles with interface optical phonons in quantum wells composed of uniaxially symmetric materials is studied theoretically. It is shown that the character of this interaction depends considerably on the degree of anisotropy of the phonon spectrum in the materials forming the quantum well and the barriers. In the case of strong anisotropy, the interaction turns out to be significantly weaker than it is in similar structures made of materials with cubic symmetry. In the case of weak phonon anisotropy, the interaction of charged particles with optical phonons can under certain conditions be described by a Fröhlich-type coupling constant, and both weak and strong electron–phonon interaction can take place in different structures. The results obtained extend the possibilities of the optical diagnostics of quantum nanostructures.

About the authors

A. Yu. Maslov

Ioffe Institute

Email: proshina.ton@mail.ioffe.ru
Russian Federation, St. Petersburg, 194021

O. V. Proshina

Ioffe Institute

Author for correspondence.
Email: proshina.ton@mail.ioffe.ru
Russian Federation, St. Petersburg, 194021


Copyright (c) 2019 Pleiades Publishing, Ltd.

This website uses cookies

You consent to our cookies if you continue to use our website.

About Cookies