Ab initio multicenter tight-binding model for molecular-dynamics simulations and other applications in covalent systems

Otto F. Sankey and David J. Niklewski
Phys. Rev. B 40, 3979 – Published 15 August 1989
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Abstract

A new, approximate method has been developed for computing total energies and forces for a variety of applications including molecular-dynamics simulations of covalent materials. The method is tight-binding-like and is founded on density-functional theory within the pseudopotential scheme. Slightly excited pseudo-atomic-orbitals are used to derive the tight-binding Hamiltonian matrix in real space. The method is used to find the electronic states and total energies for a variety of crystalline phases of Si and the Si2 molecule. Excellent agreement is found with experiment and other first-principles methods. As simple applications of the method, we perform a molecular-dynamics simulated-annealing study of the Si3 molecule to determine the ground-state configuration, and a molecular-dynamics simulation of the spectral density function of the Si2 molecule at high and low excitation levels.

  • Received 21 February 1989

DOI:https://doi.org/10.1103/PhysRevB.40.3979

©1989 American Physical Society

Authors & Affiliations

Otto F. Sankey and David J. Niklewski

  • Department of Physics, Arizona State University, Tempe, Arizona 85287-1504

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Vol. 40, Iss. 6 — 15 August 1989

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