Published June 23, 2006 | Version v1
Journal article

Effects of mixing and stirring on the critical behaviour

  • 1. Department of Theoretical Physics, St Petersburg University, Uljanovskaja 1, St Petersburg, Petrodvorez, 198504 (Russian Federation)
  • 2. Institute of Experimental Physics, Slovak Academy of Sciences, Watsonova 47, 04011 Kosice (Slovakia)
  • 3. Division of Theoretical Physics, Department of Physics, University of Helsinki, FIN-00014 (Finland)

Description

Stochastic dynamics of a nonconserved scalar order parameter near its critical point, subject to random stirring and mixing, is studied using the field-theoretic renormalization group. The stirring and mixing are modelled by a random external Gaussian noise with the correlation function ∼δ(t - t')k4-d-y and the divergence-free (due to incompressibility) velocity field, governed by the stochastic Navier-Stokes equation with a random Gaussian force with the correlation function ∝ δ(t-t')k4-d-y'. Depending on the relations between the exponents y and y' and the space dimensionality d, the model reveals several types of scaling regimes. Some of them are well known (model A of equilibrium critical dynamics and linear passive scalar field advected by a random turbulent flow), but there are three new non-equilibrium regimes (universality classes) associated with new nontrivial fixed points of the renormalization group equations. The corresponding critical dimensions are calculated in the two-loop approximation (second order of the triple expansion in y, y' and ε = 4 - d)

Availability note (English)

Available online at http://stacks.iop.org/0305-4470/39/7867/a6_25_s05.pdf or at the Web site for the Journal of Physics. A, Mathematical and General (ISSN 1361-6447) http://www.iop.org/

Additional details

Publishing Information

Journal Title
Journal of Physics. A, Mathematical and General
Journal Volume
39
Journal Issue
25
Journal Page Range
p. 7867-7887
ISSN
0305-4470
CODEN
JPHAC5