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Metastable reverse-phase droplets within ordered phases: Renormalization-group calculation of field and temperature
Ege Eren1, A Nihat Berker2,3
1Department of Electrical Engineering, Boğaziçi University, Bebek, Istanbul 34342, Turkey.
Abstract:
Metastable reverse-phase droplets are calculated by renormalization-group theory by evaluating the magnetization of a droplet under magnetic field, matching the boundary condition with the reverse phase and noting whether the reverse-phase magnetization sustains. The maximal metastable droplet size and the discontinuity across the droplet boundary are thus calculated as a function of temperature and magnetic field for the Ising model in three dimensions. The method also yields hysteresis loops for finite systems, as function of temperature and system size.
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