paper

Metastable and scaling regimes of a one-dimensional Kawasaki dynamics

arXiv:1601.04375 · doi:10.1103/PhysRevE.93.042120

Abstract

We investigate the large-time scaling regimes arising from a variety of metastable structures in a chain of Ising spins with both first- and second-neighbor couplings while subject to a Kawasaki dynamics. Depending on the ratio and sign of these former, different dynamic exponents are suggested by finite-size scaling analyses of relaxation times. At low but nonzero-temperatures these are calculated via exact diagonalizations of the evolution operator in finite chains under several activation barriers. In the absence of metastability the dynamics is always diffusive.

18 pages, 8 figures. Brief additions. To appear in Phys. Rev. E