1988The Journal of Chemical PhysicsRequires access

A molecular dynamics simulation of the Lennard-Jones liquid–vapor interface

M. J. P. Nijmeijer, A. Bakker, C. Bruin, J.H. Sikkenk

Open publisher page 263 citations

Abstract

The surface tension of a Lennard-Jones liquid–vapor interface has been determined accurately in a molecular dynamics simulation. Our values tend to be smaller than those from previous simulations. It is shown that the usually truncated tail of the potential strongly increases the surface tension if taken into account.

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What this paper is about

The surface tension of a Lennard-Jones liquid–vapor interface has been determined accurately in a molecular dynamics simulation. Our values tend to be smaller than those from previous simulations. It is shown that the usually truncated tail of the potential strongly increases the surface tension if taken into account.

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OpenAlex reports 263 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The surface tension of a Lennard-Jones liquid–vapor interface has been determined accurately in a molecular dynamics simulation. Our values tend to be smaller than those from previous simulations. It is shown that the usually truncated tail of the potential strongly increases the surface tension if taken into account.

Key concepts: Molecular dynamics, Surface tension, Lennard-Jones potential, Interface (matter), Materials science, Surface (topology), Thermodynamics, Statistical physics

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