2014IEEE Transactions on MagneticsRequires access

Dynamic Coercivity and Energy Absorption in Ensembles of Superparamagnetic Particles

I. S. Poperechny, Yu. L. Raĭkher

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Abstract

Nonlinear magnetization and the ac field energy absorption in single-domain nanoparticles with superparamagnetic behavior are considered. The exact kinetic description is reduced by retaining only the essential part of the magnetic response. Simple analytical formulas delivering the dynamic coercivity and the hysteresis loop area, i.e., absorption per cycle, are obtained. The good accuracy of these expressions with respect to temperature, frequency, and amplitude of the ac field dependences is demonstrated by comparison with the full numerical solutions.

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Nonlinear magnetization and the ac field energy absorption in single-domain nanoparticles with superparamagnetic behavior are considered. The exact kinetic description is reduced by retaining only the essential part of the magnetic response. Simple analytical formulas delivering the dynamic coercivity and the hysteresis loop area, i.e., absorption per cycle, are obtained. The good accuracy of these expressions with respect to temperature, frequency, and amplitude of the ac field dependences is demonstrated by comparison with the full numerical solutions.

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Available abstract

Nonlinear magnetization and the ac field energy absorption in single-domain nanoparticles with superparamagnetic behavior are considered. The exact kinetic description is reduced by retaining only the essential part of the magnetic response. Simple analytical formulas delivering the dynamic coercivity and the hysteresis loop area, i.e., absorption per cycle, are obtained. The good accuracy of these expressions with respect to temperature, frequency, and amplitude of the ac field dependences is demonstrated by comparison with the full numerical solutions.

Key concepts: Coercivity, Superparamagnetism, Materials science, Hysteresis, Single domain, Magnetization, Absorption (acoustics), Condensed matter physics

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