Bond-orientational order in liquids and glasses

Paul J. Steinhardt, David R. Nelson, and Marco Ronchetti
Phys. Rev. B 28, 784 – Published 15 July 1983
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Abstract

Bond-orientational order in molecular-dynamics simulations of supercooled liquids and in models of metallic glasses is studied. Quadratic and third-order invariants formed from bond spherical harmonics allow quantitative measures of cluster symmetries in these systems. A state with short-range translational order, but extended correlations in the orientations of particle clusters, starts to develop about 10% below the equilibrium melting temperature in a supercooled Lennard-Jones liquid. The order is predominantly icosahedral, although there is also a cubic component which we attribute to the periodic boundary conditions. Results are obtained for liquids cooled in an icosahedral pair potential as well. Only a modest amount of orientational order appears in a relaxed Finney dense-random-packing model. In contrast, we find essentially perfect icosahedral bond correlations in alternative "amorphon" cluster models of glass structure.

  • Received 27 December 1982

DOI:https://doi.org/10.1103/PhysRevB.28.784

©1983 American Physical Society

Authors & Affiliations

Paul J. Steinhardt*

  • IBM Thomas J. Watson Research Center, Yorktown Heights, New York 10598

David R. Nelson

  • Lyman Laboratory of Physics, Harvard University, Cambridge, Massacnusetts 02138

Marco Ronchetti

  • IBM Thomas J. Watson Research Center, Yorktown Heights, New York 10598

  • *Permanent address: David Rittenhouse Laboratory, University of Pennsylvania, Philadelphia, Pennsylvania 19104-3859.
  • Permanent address: Dipartimento di Fisica, Libera Università degli Studi di Trento, I-381000 Trento, Italy.

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Vol. 28, Iss. 2 — 15 July 1983

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