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Magneto-optic imaging of domain walls in ferrimagnetic garnet films

机译:亚铁石榴石薄膜中畴壁的磁光成像

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摘要

Magneto-optic (MO) imaging is based on Faraday rotation of a linearly polarized incident light beam illuminating a sensitive MO layer (MOL) placed in close contact to the sample. For in-plane magnetized layers of Lu3-x,Bi,Fe5-y,GayO12 ferrimagnetic garnet films, zig-zag domain formation occurs whenever the sample stray parallel field component, H-parallel to, changes sign. Considering the anisotropy, exchange and magnetostatic energies in the Neel tails, and the contribution of an applied magnetic field, it is possible to describe the zig-zag walls that separate domains with opposite in-plane magnetization. The size of the walls decreases with the spatial derivative of H-parallel to. We studied the evolution of these domains as we steadily forced the change in sign of H-parallel to to shorter length scales, from hundreds to a few microns. We describe the samples used to control the change in sign of H-parallel to at the MOL plane, and we analyze the images that evolve from zig-zag walls to much more complex closed domain structures. (c) 2007 Elsevier B.V. All rights reserved.
机译:磁光(MO)成像基于线偏振入射光束的法拉第旋转,照亮与样品紧密接触的敏感MO层(MOL)。对于Lu3-x,Bi,Fe5-y,GayO12亚铁石榴石薄膜的面内磁化层,只要样本杂散平行磁场分量(与H平行)改变符号,就会发生之字形畴的形成。考虑到Neel尾部的各向异性,交换和静磁能,以及施加的磁场的影响,有可能描述之字形壁,它们将具有相反的面内磁化强度的磁畴分开。壁的大小随H平行于的空间导数而减小。我们不断地将H平行符号的变化强制到较短的长度尺度(从数百微米到几微米),我们研究了这些域的演变。我们描述了用于控制H平行于MOL平面的符号变化的样本,并且我们分析了从之字形壁演变成更复杂的封闭域结构的图像。 (c)2007 Elsevier B.V.保留所有权利。

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