Light Scattering from Nonequilibrium Concentration Fluctuations in a Polymer solution
arXiv:cond-mat/0002379 · doi:10.1063/1.481524
Abstract
We have performed light-scattering measurements in dilute and semidilute polymer solutions of polystyrene in toluene when subjected to stationary temperature gradients. Five solutions with concentrations below and one solution with a concentration above the overlap concentration were investigated. The experiments confirm the presence of long-range nonequilibrium concentration fluctuations which are proportional to , where is the applied temperature gradient and is the wave number of the fluctuations. In addition, we demonstrate that the strength of the nonequilibrium concentration fluctuations, observed in the dilute and semidilute solution regime, agrees with theoretical values calculated from fluctuating hydrodynamics. Further theoretical and experimental work will be needed to understand nonequilibrium fluctuations in polymer solutions at higher concentrations.
revtex, 16 pages, 7 figures. J. Chem. Phys., to appear
Cited by in corpus (6)
- Giant Casimir effect in fluids in non-equilibrium steady states
- Non-equilibrium Casimir-like Forces in Liquid Mixtures
- Physical origin of nonequilibrium fluctuation-induced forces in fluids
- Fluctuation-induced pressures in fluids in thermal nonequilibrium steady states
- Nonequilibrium fluctuation-induced Casimir pressures in liquid mixtures
- Spatial correlations in sheared isothermal liquids : From elastic particles to granular particles