Prewetting transition on a weakly disordered substrate: Evidence for a creeping film dynamics

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2001 EDP Sciences
, , Citation X. Müller and J. Dupont-Roc 2001 EPL 54 533 DOI 10.1209/epl/i2001-00280-2

0295-5075/54/4/533

Abstract

We present the first microscopic images of the prewetting transition of a liquid film on a solid surface. Pictures of the local coverage map of a helium film on a cesium metal surface are taken while the temperature is raised through the transition. The film edge is found to advance at constant temperature by successive avalanches in a creep motion with a macroscopic correlation length. The creep velocity varies strongly in a narrow temperature range. The retreat motion is obtained only at much lower temperature, conforming to the strong hysteresis observed for prewetting transition on a disordered surface. Prewetting transition on such disordered surfaces appears to give rise to dynamical phenomena similar to what is observed for domain wall motions in 2D magnets.

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10.1209/epl/i2001-00280-2