Micromagnetics of magnetization processes in toroidal geometries
A. S. Arrott, B. Heinrich, Dan S. Bloomberg
Abstract
A. S. Arrott, B. Heinrich, Dan S. Bloomberg
Abstract
The micromagnetics of competition between magnetostatic and exchange energies is investigated for two geometries. For a cylindrical tube an approximate solution yields the magnetization for all values of the applied magnetic field producing remanence, a coercive field and a critical field at which the magnetization changes irreversibly. The behavior in the irreversible region is also calculated. For the geometry of a thin toroidal shell it is found that most of the reversal processes is divergentless, but in a crucial region magnetic charges develop.
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The micromagnetics of competition between magnetostatic and exchange energies is investigated for two geometries. For a cylindrical tube an approximate solution yields the magnetization for all values of the applied magnetic field producing remanence, a coercive field and a critical field at which the magnetization changes irreversibly. The behavior in the irreversible region is also calculated. For the geometry of a thin toroidal shell it is found that most of the reversal processes is divergentless, but in a crucial region magnetic charges develop.
Key concepts: Micromagnetics, Remanence, Magnetization, Condensed matter physics, Stoner–Wohlfarth model, Materials science, Field (mathematics), Coercivity