Envelope-function formalism for valence bands in wurtzite quantum wells

Yu. M. Sirenko, J.-B. Jeon, K. W. Kim, M. A. Littlejohn, and M. A. Stroscio
Phys. Rev. B 53, 1997 – Published 15 January 1996
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Abstract

A theoretical treatment of the valence-band spectrum of wurtzite-type materials is developed starting from the Rashba-Sheka-Pikus (RSP) 6×6 matrix Hamiltonian for coupled Γ9, Γ7, and Γ7 levels. A unitary transformation is applied in order to diagonalize the RSP Hamiltonian to two 3×3 blocks and the results are compared with those obtained for cubic structures [C. Y.-P. Chao and S. L. Chuang, Phys. Rev. B 46, 4110 (1992)]. Using the diagonalized form of the Hamiltonian, a solution for hole states in wurtzite quantum wells (QW’s) is constructed and explicit expressions for the QW valence subband edges are obtained. We suggest that parameters of the RSP Hamiltonian for würtzite structures can be deduced from experimental observations of the energy separation between edges of the hole subbands in QW’s. © 1996 The American Physical Society.

  • Received 24 May 1995

DOI:https://doi.org/10.1103/PhysRevB.53.1997

©1996 American Physical Society

Authors & Affiliations

Yu. M. Sirenko, J.-B. Jeon, K. W. Kim, and M. A. Littlejohn

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

M. A. Stroscio

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

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Vol. 53, Iss. 4 — 15 January 1996

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