English

Capillary Wave Scattering from a Surfactant Domain

Condensed Matter 2016-08-31 v1

Abstract

The study of capillary wave scattering by a circular region with different interfacial properties from the rest of an otherwise homogeneous interface is motivated by experiments on wave attenuation at a monolayer covered air-water interface where domains of one surface phase are dispersed in a second surface phase. Here the scattering function is calculated for an incident wave of frequency ω\omega (wavevector k0k_0) scattering from an isolated circular domain of radius aa with surface tension σ1\sigma_{1} which is imbedded in an otherwise infinite interface of surface tension σ0\sigma_{0}. The underlying fluid is treated as irrotational and the three-dimensional flow problem coupling the heterogeneous surface to the underlying liquid is reduced to a set of dual integral equations, which are solved numerically. With this solution the scattering amplitudes and the total scattering cross sections are calculated as a function of the surface tension ratio σ0/σ1\sigma_{0}/\sigma_{1} and incident wavenumber k0ak_0 a. The analogous problem of a discontinuous change in bending rigidity is also considered and the solution to the complete viscous problem is outlined in an appendix. Experimental implications of these results are discussed.

Keywords

Cite

@article{arxiv.cond-mat/9501056,
  title  = {Capillary Wave Scattering from a Surfactant Domain},
  author = {T. Chou and S. K. Lucas and H. A. Stone},
  journal= {arXiv preprint arXiv:cond-mat/9501056},
  year   = {2016}
}

Comments

18 pages latex, 9 uuencoded figures, ignore latex errors

R2 v1 2026-07-22T11:48:53.759Z