4.5 Article

Thermal behavior of dynamic magnetizations, hysteresis loop areas and correlations of a cylindrical Ising nanotube in an oscillating magnetic field within the effective-field theory and the Glauber-type stochastic dynamics approach

期刊

PHYSICS LETTERS A
卷 376, 期 10-11, 页码 1011-1019

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.physleta.2012.02.001

关键词

Dynamic phase transition; Magnetic nanotube; Ising model; Hysteresis loop; Effective-field theory; Compensation temperature

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The dynamical aspects of a cylindrical Ising nanotube in the presence of a time-varying magnetic field are investigated within the effective-field theory with correlations and Glauber-type stochastic approach. Temperature dependence of the dynamic magnetizations, dynamic total magnetization, hysteresis loop areas and correlations are investigated in order to characterize the nature of dynamic transitions as well as to obtain the dynamic phase transition temperatures and compensation behaviors. Some characteristic phenomena are found depending on the ratio of the physical parameters in the surface shell and core, i.e., five different types of compensation behaviors in the Neel classification nomenclature exist in the system. (C) 2012 Elsevier B.V. All rights reserved.

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