Phase transitions and universal dynamics in confined films

Peter A. Thompson, Gary S. Grest, and Mark O. Robbins
Phys. Rev. Lett. 68, 3448 – Published 8 June 1992
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Abstract

We describe molecular dynamics simulations of fluid films confined between two solid walls. The films consist of spherical molecules, or flexible linear chains with up to twenty monomers. When the wall separation is only a few molecular diameters, crystalline or glassy order is induced across the film. The onset of the glassy phase is characterized by rapidly increasing relaxation times. These manifest themselves through changes in the diffusion constant and in the response to shear. The viscosity exhibits the same power-law scaling with shear rate that was observed in recent experiments. Our study suggests that this response is a universal property of lubricants near a glass transition.

  • Received 31 January 1992

DOI:https://doi.org/10.1103/PhysRevLett.68.3448

©1992 American Physical Society

Authors & Affiliations

Peter A. Thompson and Gary S. Grest

  • Corporate Research Science Laboratories, Exxon Research and Engineering Company, Annandale, New Jersey 08801

Mark O. Robbins

  • Department of Physics and Astronomy, The John Hopkins University, Baltimore, Maryland 21218

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Vol. 68, Iss. 23 — 8 June 1992

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