Corner wetting in a far-from-equilibrium magnetic growth model

被引:0
|
作者
V. Manías
J. Candia
E. V. Albano
机构
[1] Facultad de Ciencias Exactas,IFLP, CONICET/Departamento de Física
[2] Universidad Nacional de La Plata,undefined
[3] INIFTA,undefined
[4] Facultad de Ciencias Exactas,undefined
[5] Universidad Nacional de La Plata,undefined
关键词
Magnetic Field; Neural Network; Phase Diagram; Nonlinear Dynamics; Growth Model;
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摘要
The irreversible growth of magnetic films is studied in three-dimensional confined geometries of size L×L×M, where M≫L is the growing direction. Competing surface magnetic fields, applied to opposite corners of the growing system, lead to the observation of a localization-delocalization (weakly rounded) transition of the interface between domains of up and down spins on the planes transverse to the growing direction. This effective transition is the precursor of a true far-from-equilibrium corner wetting transition that takes place in the thermodynamic limit. The phenomenon is characterized quantitatively by drawing a magnetic field-temperature phase diagram, firstly for a confined sample of finite size, and then by extrapolating results, obtained with samples of different size, to the thermodynamic limit. The results of this work are a nonequilibrium realization of analogous phenomena recently investigated in equilibrium systems, such as corner wetting transitions in the Ising model.
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页码:563 / 570
页数:7
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