Spin-1 model of noninteracting nanoparticles

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Abstract

In this work, we presented a spin-1 model to investigate the magnetic properties of noninteracting monodomain nanoparticles based on the pair approximation. Nearest-neighbor pair interactions are incorporated between the Ising spins in three parts that are core, core-surface, and surface within the nanoparticle. Using the spin-1 Ising model of magnetization in the pair approximation, we calculated the free energy and minimized with respect to pair variables to obtain the field-cooled magnetization. Hysteresis loops of the system were plotted for various values of exchange coupling constants, and axial anisotropy of strength which couples the core, core-surface, and surface regions. The coercive field and its linear fit to the data were plotted as a function of radius of ferromagnetic nanoparticles.

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Yalçin, O., Erdem, R., & Övünç, S. (2008). Spin-1 model of noninteracting nanoparticles. Acta Physica Polonica A, 114(4), 835–844. https://doi.org/10.12693/APhysPolA.114.835

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