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- W2080472017 abstract "Equilibrium properties of the solid-liquid and liquid-vapor interphase interfaces of lead and surface melting of Pb(110) were investigated using molecular-dynamics simulations, with the glue model used for a description of the many-body interatomic interactions. The bulk melting temperature was determined to be 619ifmmodepmelsetextpmfi{}5 K for the model. Structural, energetic, and transport properties across the solid-liquid interface change gradually from bulk solid to bulk liquid behavior over a transition region of 5--6 (110) layers. The surface region of Pb(110) starts to disorder via generation of vacancies in the temperature range 350 KT400 K. The onset of a quasiliquid surface region is observed around 520 K. The surface disordering process reflects the anisotropy of the (110) surface, being enhanced in the direction parallel to the close-packed rows. Analysis of the results in the framework of the Landau-Ginzburg theory of surface melting shows that the thickness of the interfacial quasiliquid region grows logarithmically for T>520 K, with a correlation length of 7.7 AA{}, in close agreement with experimental results." @default.
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- W2080472017 date "1995-04-15" @default.
- W2080472017 modified "2023-10-13" @default.
- W2080472017 title "Equilibrium interphase interfaces and premelting of the Pb(110) surface" @default.
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- W2080472017 doi "https://doi.org/10.1103/physrevb.51.10972" @default.
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