Electron–acoustic-phonon scattering rates in rectangular quantum wires

SeGi Yu, K. W. Kim, Michael A. Stroscio, Gerald J. Iafrate, and Arthur Ballato
Phys. Rev. B 50, 1733 – Published 15 July 1994
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Abstract

Electron–acoustic-phonon scattering in a rectangular quantum wire is studied. The Hamiltonian describing the deformation-potential interaction of confined acoustic phonons with carriers is derived by quantizing the appropriate, experimentally verified approximate compressional acoustic-phonon modes in a free-standing rectangular quantum wire. The scattering rate due to the deformation-potential interaction is obtained for GaAs quantum wires with a range of cross-sectional dimensions. The results demonstrate that a proper treatment of confined acoustic phonons may be essential to correctly model electron scattering rates at low energies in nanoscale structures.

  • Received 18 March 1994

DOI:https://doi.org/10.1103/PhysRevB.50.1733

©1994 American Physical Society

Authors & Affiliations

SeGi Yu and K. W. Kim

  • Department of Electrical and Computer Engineering, North Carolina State University, Raleigh, North Carolina 27695-7911

Michael A. Stroscio and Gerald J. Iafrate

  • U.S. Army Research Office, P. O. Box 12211, Research Triangle Park, North Carolina 27709-2211

Arthur Ballato

  • Electronics and Power Sources Directorate, U.S. Army Research Laboratory, Ft. Monmouth, New Jersey 07703-5601

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Issue

Vol. 50, Iss. 3 — 15 July 1994

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