Wednesday, June 19, 2013

1306.4300 (Svitlana V. Kondovych et al.)

Magnetic Dynamics of a Multiferroic with an Antiferromagnetic Layer    [PDF]

Svitlana V. Kondovych, Helen V. Gomonay, Vadim M. Loktev
Shape effects in magnetic particles are widely studied, because of the ability of the shape and the size to control the parameters of a sample during its production. Experiments with nano-sized samples show that the shape can affect also the properties of antiferromagnetic (AFM) materials. However, the theoretical interpretation of these effects is under discussion. We propose a model to study the shape-induced effects in AFM particles at the AFM resonance frequency. The Lagrange function method is used to calculate the spectrum of resonance oscillations of the AFM vector in a synthetic multiferroic (piezoelectric + antiferromagnet). The influence of the specimen shape on the AFM resonance frequency in the presence of an external magnetic field is studied. Conditions for a resonance under the action of an external force or for a parametric resonance to arise in the magnetic subsystem are considered.
View original: http://arxiv.org/abs/1306.4300

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