English

Structure-Factor Tail for the Ordering Kinetics of Nonconserved Fields without Topological Defects

Condensed Matter 2009-10-28 v1

Abstract

Using a cell dynamic system (CDS) simulation scheme, we investigate the phase-ordering dynamics of non-conserved O(n) models without topological defects, i.e. for n>d+1n > d+1 where dd is the spatial dimensionality. In particular, we consider zero-temperature quenches for d=2d=2, n=4,5n=4,5, and for d=1d=1, n=3,4,5n=3,4,5. We find, in agreement with previous simulations using fixed-length spins, that dynamical scaling is obtained, with characteristic length L(t)=t1/2L(t) = t^{1/2}. We show that the asymptotic behaviour of the structure-factor scaling function g(q)g(q) is well fitted by the stretched exponential form g(q)exp(bqδ)g(q)\sim \exp(-bq^\delta), with an exponent δ\delta that appears to depend on both n and d. An analytical treatment of an approximate large-N equation for the pair correlation function yields g(q)q(d1)/2exp(bq)g(q) \sim q^{-(d-1)/2}\exp(-bq), with b(lnn)1/2b \sim (\ln n)^{1/2} for large nn, in agreement with recent simulations of the same equation.

Keywords

Cite

@article{arxiv.cond-mat/9601076,
  title  = {Structure-Factor Tail for the Ordering Kinetics of Nonconserved Fields without Topological Defects},
  author = {F. Rojas and A. J. Bray},
  journal= {arXiv preprint arXiv:cond-mat/9601076},
  year   = {2009}
}

Comments

Latex, 22 pages, 10 figures

R2 v1 2026-07-22T11:51:54.024Z