Scaling behavior in the dynamics of a supercooled Lennard-Jones mixture

Physics – Condensed Matter

Scientific paper

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6 pages, RevTex, three postscript figures available on request, MZ-Physics-101

Scientific paper

10.1007/BF02458815

We present the results of a large scale molecular dynamics computer simulation of a binary, supercooled Lennard-Jones fluid. At low temperatures and intermediate times the time dependence of the intermediate scattering function is well described by a von Schweidler law. The von Schweidler exponent is independent of temperature and depends only weakly on the type of correlator. For long times the correlation functions show a Kohlrausch behavior with an exponent $\beta$ that is independent of temperature. This dynamical behavior is in accordance with the mode-coupling theory of supercooled liquids.

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