Please use this identifier to cite or link to this item: https://libjncir.jncasr.ac.in/xmlui/handle/10572/2044
Title: Role of initial correlation in coarsening of a ferromagnet
Authors: Chakraborty, Saikat
Das, Subir K.
Keywords: Condensed Matter Physics
Spinodal Decomposition
Binary-Mixtures
Nonequilibrium Dynamics
Global Persistence
Finite-Temperature
Ising-Model
Kinetics
Systems
Simulations
Diffusion
Issue Date: 2015
Publisher: Springer
Citation: European Physical Journal B
88
6
Chakraborty, S.; Das, S. K., Role of initial correlation in coarsening of a ferromagnet. European Physical Journal B 2015, 88 (6), 9.
Abstract: We study the dynamics of ordering in ferromagnets via Monte Carlo simulations of the Ising model, employing the Glauber spin-flip mechanism, in space dimensions d = 2 and 3, on square and simple cubic lattices. Results for the persistence probability and the domain growth are discussed for quenches to various temperatures (T-f) below the critical one (T-c), from different initial temperatures T-i >= T-c. In long time limit, for T-i > T-c, the persistence probability exhibits power-law decay with exponents theta similar or equal to 0.22 and similar or equal to 0.18 in d = 2 and 3, respectively. For finite T-i, the early time behavior is a different power-law whose life-time diverges and exponent decreases as T-i -> T-c. The two steps are connected via power-law as a function of domain length and the crossover to the second step occurs when this characteristic length exceeds the equilibrium correlation length at T = T-i. T-i = T-c is expected to provide a new universality class for which we obtain theta theta(c) similar or equal to 0.035 in d = 2 and similar or equal to 0.105 in d = 3. The time dependence of the average domain size l, however, is observed to be rather insensitive to the choice of T-i.
Description: Restricted access
URI: https://libjncir.jncasr.ac.in/xmlui/10572/2044
ISSN: 1434-6028
Appears in Collections:Research Articles (Subir Kumar Das)

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