Title :
Magnetic hardening from the suppression of domain walls by nonmagnetic particles
Author :
Shenyang Hu ; Yulan Li ; McCloy, J. ; Montgomery, R. ; Henager, Charles
Author_Institution :
Pacific Northwest Nat. Lab., Richland, WA, USA
Abstract :
Magnetic domain switching and hysteresis loops in a single crystal α-iron with and without nonmagnetic particles were simulated based on the Landau-Lifshitz-Gilbert equation of magnetization dynamics. Both the nonmagnetic particle and the 360° domain wall are nucleation sites of an antidirection domain during domain switching; however, the 360° Bloch domain wall is the easiest nucleation site. The nucleation occurs by splitting the 360° Bloch domain wall into two 180° Bloch domain walls. The existence of nonmagnetic particles could prevent the formation of 360° Bloch domain walls and cause magnetic hardening. Simulations demonstrate the impact of nonmagnetic particle sizes on magnetic domain switching and coercive field.
Keywords :
coercive force; iron; magnetic domain walls; magnetic hysteresis; nucleation; Bloch domain wall; Fe; Landau-Lifshitz-Gilbert equation; antidirection domain; coercive field; domain walls suppression; hysteresis loops; magnetic domain switching; magnetic hardening; magnetization dynamics; nonmagnetic particle sizes; nucleation sites; single crystal α-iron; Magnetic domain walls; Magnetic domains; Magnetic hysteresis; Magnetomechanical effects; Materials; Mathematical model; Switches; Magnetodynamics; iron single crystals; magnetic hardening; magnetic hysteresis loops; nonmagnetic particle;
Journal_Title :
Magnetics Letters, IEEE
DOI :
10.1109/LMAG.2013.2245861