Adiabatic bond charge model for the phonons in diamond, Si, Ge, and αSn

Werner Weber
Phys. Rev. B 15, 4789 – Published 15 May 1977
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Abstract

An adiabatic bond charge model (BCM) for the lattice dynamics of diamond-type crystals is developed. Our BCM unites elements of earlier models by Phillips and Martin, Keating, and Cochran. Four types of interactions are used: (a) central ion-ion forces, (b) Coulomb interactions of the ions and bond charges (BC's), (c) central ion-BC forces, and (d) bond-bending forces. These interactions represent the metal-like (a) and covalent (b)-(d) part of the crystal bonding. The phonon dispersion curves for Si, Ge, and αSn are calculated using only four disposable parameters; for diamond, five parameters are employed. For all crystals, very good agreement with experiment is obtained. In particular, the typical flattening of the transverse acoustic phonons in the semiconducting materials is understood as a consequence of the adiabatic motion of the BC's, when the effective ion-BC coupling (b)+(c) is weak compared to the bond-bending forces (d). In an alternative representation of the BCM, the interactions (b) and (c) are replaced by central and noncentral ion-BC-ion potentials along one bond. The remaining long-range part of the Coulomb forces is unimportant; therefore, all essential interactions of the BCM are of very short range. Furthermore, the interaction parameters follow clear trends from diamond to αSn: type (a) increases, whereas types (b)-(d) decrease, especially the ion-BC coupling tends to vanish toward αSn.

  • Received 6 December 1976

DOI:https://doi.org/10.1103/PhysRevB.15.4789

©1977 American Physical Society

Authors & Affiliations

Werner Weber*

  • Max-Planck-Institut für Festkörperforschung, 7 Stuttgart 80, Federal Republic of Germany
  • Bell Laboratories, Murray Hill, New Jersey 07974

  • *On leave of absence from Max-Planck-Institut für Festkörperforschung, 7 Stuttgart 80, W. Germany.

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Issue

Vol. 15, Iss. 10 — 15 May 1977

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