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 alloysReceived 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
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