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Phys. Rev. B 31, 5262–5271 (1985)

Computer simulation of local order in condensed phases of silicon

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Frank H. Stillinger and Thomas A. Weber
AT&T Bell Laboratories, Murray Hill, New Jersey 07974

See Also: Erratum

Received 7 November 1984; published in the issue dated 15 April 1985

A model potential-energy function comprising both two- and three-atom contributions is proposed to describe interactions in solid and liquid forms of Si. Implications of this potential are then explored by molecular-dynamics computer simulation, using 216 atoms with periodic boundary conditions. Starting with the diamond-structure crystal at low temperature, heating causes spontaneous nucleation and melting. The resulting liquid structurally resembles the real Si melt. By carrying out steepest-descent mappings of system configurations onto potential-energy minima, two main conclusions emerge: (1) a temperature-independent inherent structure underlies the liquid phase, just as for ‘‘simple’’ liquids with only pair interactions; (2) the Lindemann melting criterion for the crystal apparently can be supplemented by a freezing criterion for the liquid, where both involve critical values of appropriately defined mean displacements from potential minima.

© 1985 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.31.5262
DOI:
10.1103/PhysRevB.31.5262
PACS:
61.20.Ja, 61.20.Qg, 64.70.Dv, 05.70.Fh

See Also

Erratum: Frank H. Stillinger and Thomas A. Weber, Erratum: Computer simulation of local order in condensed phases of silicon [Phys. Rev. B 31, 5262 (1985)], Phys. Rev. B 33, 1451 (1986).