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Embedded Atom Method Study of PdThin Films on Cu(001)

Author

Listed:
  • A. Bilić

    (Department of Physics, University of Newcastle, NSW 2308, Australia)

  • Y. G. Shen

    (Department of Physics, University of Newcastle, NSW 2308, Australia)

  • B. V. King

    (Department of Physics, University of Newcastle, NSW 2308, Australia)

  • D. J. O'Connor

    (Department of Physics, University of Newcastle, NSW 2308, Australia)

Abstract

We have studied the structures formed by the deposition of 0.5 and 1 monolayer (ML) of Pd on a Cu(001) surface using Monte Carlo (MC) simulations and static optimizations. The energetics are given by the semiempirical embedded atom method (EAM). At 0.5 ML Pd coverage we find that a Pd–Cuc(2×2)single layer surface alloy is created, consistent with experimental observations. At 1 ML Pd coverage a double layerc(2×2)Cu–Pd surface alloy is found to be energetically favored over structures with a clock-reconstructed topmost layer. However, metastable configurations of the top layer consisting of a clock-rotated phase with the(2×2)p4gsymmetry coexisting with phases withc(2×2)andp(2×2)symmetries can also be obtained, in agreement with the experimental results.

Suggested Citation

  • A. Bilić & Y. G. Shen & B. V. King & D. J. O'Connor, 1998. "Embedded Atom Method Study of PdThin Films on Cu(001)," Surface Review and Letters (SRL), World Scientific Publishing Co. Pte. Ltd., vol. 5(05), pages 959-963.
  • Handle: RePEc:wsi:srlxxx:v:05:y:1998:i:05:n:s0218625x98001298
    DOI: 10.1142/S0218625X98001298
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