Artículo
Dynamical and stationary critical behavior of the Ising ferromagnet in a thermal gradient
Fecha de publicación:
07/2012
Editorial:
Springer
Revista:
European Physical Journal B - Condensed Matter
ISSN:
1434-6028
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
In this paper we present and discuss results of Monte Carlo numerical simulations of the twodimensional Ising ferromagnet in contact with a heat bath that intrinsically has a thermal gradient. The extremes of the magnet are at temperatures T1 < Tc < T2, where Tc is the Onsager critical temperature. In this way one can observe a phase transition between an ordered phase (T < Tc ) and a disordered one (T > Tc ) by means of a single simulation. By starting the simulations with fully disordered initial configurations with magnetization m ≡ 0 corresponding to T = ∞, which are then suddenly annealed to a preset thermal gradient, we study the short-time critical dynamic behavior of the system. Also, by setting a small initial magnetization m = m0, we study the critical initial increase of the order parameter. Furthermore, by starting the simulations from fully ordered configurations, which correspond to the ground state at T = 0 and are subsequently quenched to a preset gradient, we study the critical relaxation dynamics of the system. Additionally, we perform stationary measurements (t → ∞) that are discussed in terms of the standard finite-size scaling theory. We conclude that our numerical simulation results of the Ising magnet in a thermal gradient, which are rationalized in terms of both dynamic and standard scaling arguments, are fully consistent with well established results obtained under equilibrium conditions.
Palabras clave:
Thermal-gradients
,
Critical-phenomena
,
Interafces
,
Ising-ferromagnet
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Articulos(IFLYSIB)
Articulos de INST.FISICA DE LIQUIDOS Y SIST.BIOLOGICOS (I)
Articulos de INST.FISICA DE LIQUIDOS Y SIST.BIOLOGICOS (I)
Citación
Muglia, Juan; Albano, Ezequiel Vicente; Dynamical and stationary critical behavior of the Ising ferromagnet in a thermal gradient; Springer; European Physical Journal B - Condensed Matter; 85; 8; 7-2012; 1-11
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