English

Shear-induced Casimir forces in liquid layers

Statistical Mechanics 2019-01-25 v2 Fluid Dynamics

Abstract

In stationary nonequilibrium states a coupling between hydrodynamic modes causes thermal fluctuations to become long ranged inducing nonequilibrium Casimir forces or pressures. Here we consider nonequilibrium Casimir pressures induced in liquids by a velocity gradient. Specifically, we have obtained explicit expressions for the magnitude of the shear-induced pressure enhancement in a liquid layer between two horizontal plates that complete and correct results previously presented in the literature. In contrast to nonequiibrium Casimir pressures induced by a temperature gradient, kinetic theory shows that nonequilibrium contributions from short-range fluctuations are no longer negligible. In addition, it is noted that computer simulations of model fluids in shear observe effects from molecular correlations at nanoscales that have a different physical origin. The idea that such computer simulations probe shear-induced pressures resulting from coupling of long-wavelength hydrodynamic modes is erroneous.

Keywords

Cite

@article{arxiv.1804.06125,
  title  = {Shear-induced Casimir forces in liquid layers},
  author = {J. M. Ortiz de Zárate and T. R. Kirkpatrick and J. V. Sengers},
  journal= {arXiv preprint arXiv:1804.06125},
  year   = {2019}
}

Comments

8 pages. Two tables. No figures

R2 v1 2026-06-23T01:26:06.825Z