Kerr microscopy study of magnetic domains and their dynamics in bulk Ni–Mn–Ga austenite
Abstract
The observation of magnetic domains on the surface of bulk austenite Ni–Mn–Ga has been a significant challenge for many years. Using advanced Kerr microscopy, with automatic compensation of the sample motion under monochromatic LED light, we were able to observe magnetic domains and follow their evolution with magnetic field on the {100} faces of an austenite single crystal. After mechanical polishing, the variable fine stress-induced domain patterns were observed at different locations. The Kerr loops obtained by visual integration of surface domains indicate a surface coercivity that was two orders of magnitude higher than the bulk coercivity from magnetometry measurements. After additional electropolishing, wide 180° domains could be observed with a width of about 50 μm, and the Kerr loop coercivity decreased to the level consistent with magnetometry measurements. Surprisingly, the magnetic domains were observed only along one of the two ⟨100⟩ cubic axes lying in the surface plane.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (5)
A. Perevertov
Department of Magnetic Measurements and Materials, Institute of Physics of the Czech Academy of Sciences 1 , 18200 Prague,
I. Soldatov
R. Schäfer
R. H. Colman
Department of Condensed Matter Physics, Faculty of Mathematics and Physics, Charles University 3 , 12116 Prague,
O. Heczko
FZU – Institute of Physics of the Czech Academy of Sciences , Na Slovance 1999/2, 18200 Prague 8,