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Direct Measurement of the Elastohydrodynamic Lift Force at the Nanoscale
Zaicheng Zhang1, Vincent Bertin1,2, Muhammad Arshad1
1Université de Bordeaux, CNRS, LOMA, UMR 5798, F-33405 Talence, France.
Abstract:
We present the first direct measurement of the elastohydrodynamic lift force acting on a sphere moving within a viscous liquid, near and along a soft substrate under nanometric confinement. Using atomic force microscopy, the lift force is probed as a function of the gap size, for various driving velocities, viscosities, and stiffnesses. The force increases as the gap is reduced and shows a saturation at small gap. The results are in excellent agreement with scaling arguments and a quantitative model developed from the soft lubrication theory, in linear elasticity, and for small compliances. For larger compliances, or equivalently for smaller confinement length scales, an empirical scaling law for the observed saturation of the lift force is given and discussed.
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