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Phys. Rev. B 67, 134103 (2003) [7 pages]

Using bond-length-dependent transferable force constants to predict vibrational entropies in Au-Cu, Au-Pd, and Cu-Pd alloys

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Eric J. Wu and Gerbrand Ceder*
Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139

Axel van de Walle
Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208

Received 26 July 2002; revised 10 October 2002; published 7 April 2003

A model is tested to rapidly evaluate the vibrational properties of alloys with site disorder. It is shown that length-dependent transferable force constants exist and can be used to accurately predict the vibrational entropy of substitutionally ordered and disordered structures in Au-Cu, Au-Pd, and Cu-Pd. For each relevant force constant, a length-dependent function is determined and fitted to force constants obtained from first-principles pseudopotential calculations. We show that these transferable force constants can accurately predict vibrational entropies of L12-ordered and disordered phases in Cu3Au, Au3Pd, Pd3Au, Cu3Pd, and Pd3Au. In addition, we calculate the vibrational entropy difference between L12-ordered and disordered phases of Au3Cu and Cu3Pt.

© 2003 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.67.134103
DOI:
10.1103/PhysRevB.67.134103
PACS:
64.75.+g, 63.20.-e, 65.20.+w

*Corresponding author. Electronic address: gceder@mit.edu