Abstract

Comparative analysis of nonlinear spin excitations in inorganic and metal-organic magnets was performed. The properties of nonlinear magnetic excitations in molecular magnets were established: differences in the remagnetization modes of chiral and racemic crystals, effect of chirality of crystals on the soliton spin excitations, decrease in the threshold microwave power at transition to the nonlinear ferromagnetic resonance mode. It is shown that the domain wall dynamics and development of Suhl’s instability provide additional information on the microscopic mechanisms of magnetization of molecular metal-organic magnets in comparison with inorganic magnets.

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