Published January 16, 1995 | Version Published
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Preroughening and Reentrant Layering Transitions on Triangular Lattice Substrates

  • 1. ROR icon California Institute of Technology

Abstract

Recent ellipsometric and calorimetric studies of argon and krypton adsorbed on triangular lattice graphite substrates have found a novel sequence of apparent reentrant layering transitions between integer-plus-one-half coverages. Related behavior has been demonstrated in a Monte Carlo study by Phillips, Zhang, and Larese. In contrast to arguments made by these authors, however, we use solid-on-solid models that include a substrate potential to demonstrate that this behavior should be expected to arise out of the physics that produces roughening and preroughening of a bulk crystal surface, which then provides a unified picture of both the experiments and the simulation results.

Additional Information

©1995 The American Physical Society. Received 14 February 1994. This research was supported by the NSF under Grant No. DMR-9308205, the DOE under Grant No. DE-FG03-85ER45192, and the Sloan Foundation (through a Fellowship to P.B.W.). See Also: Comment: J. M. Phillips and J. Z. Larese, Comment on "Preroughening and Reentrant Layering Transitions on Triangular Lattice Substrates", Phys. Rev. Lett. 75, 4330 (1995); Reply: P. B. Weichman and D. Goodstein, Weichman and Goodstein Reply, Phys. Rev. Lett. 75, 4331 (1995).

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Identifiers

Eprint ID
10763
Resolver ID
CaltechAUTHORS:WEIprl95

Funding

NSF
DMR-9308205
Department of Energy (DOE)
DE-FG03-85ER45192
Alfred P. Sloan Foundation

Dates

Created
2008-06-06
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Updated
2021-11-08
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