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在纳米结构薄膜中观察到的带电磁畴壁:对薄膜厚度和各向异性的依赖性。

Charged magnetic domain walls as observed in nanostructured thin films: dependence on both film thickness and anisotropy.

机构信息

Laboratory of Magnetism, Department of Physics, Public University of Navarre, Campus Arrosadía, Pamplona, Navarre, Spain.

出版信息

J Phys Condens Matter. 2013 Feb 13;25(6):066002. doi: 10.1088/0953-8984/25/6/066002. Epub 2013 Jan 10.

Abstract

The magnetic domain configurations of soft magnetic, nanostructured, pulsed laser-deposited Co films were investigated. Their dependence on both the thickness t (20 nm ≤ t ≤ 200 nm) and the anisotropy was studied. Charged zigzag walls, with a characteristic saw-tooth vertex angle θ, were observed. θ changed with t from θ ≈ 17° to ≈25°, presenting an intermediate sharp maximum that has not been described before. The reduced length of the zigzag walls also exhibited a peak at t ≈ 70 nm. The relationship between the total reduced length and the density energy of the magnetic wall allowed us to establish a change from a Néel-type to a Bloch-type core of the zigzag walls at this thickness, t ≈ 70 nm. We also accounted for the magnetic energy arising from the surface roughness of the thinner films after imaging the film surface morphologies. Moreover, this distinctive behaviour of the zigzag walls of these low-anisotropy films was compared to that of high-anisotropy films.

摘要

我们研究了软磁、纳米结构、脉冲激光沉积 Co 薄膜的磁畴结构。研究了它们对厚度 t(20nm≤t≤200nm)和各向异性的依赖性。观察到带锯齿状顶角θ的带电锯齿形壁。θ随 t 从θ≈17°变化到θ≈25°,呈现出以前未描述过的中间尖锐最大值。锯齿形壁的减小长度也在 t≈70nm 处出现峰值。总减小长度与磁壁密度能量之间的关系使我们能够在厚度 t≈70nm 处建立从 Neel 型到锯齿形壁 Bloch 型核心的转变。我们还考虑了较薄薄膜的表面粗糙度在成像薄膜表面形貌后产生的磁能。此外,与高各向异性薄膜相比,我们比较了这些低各向异性薄膜中锯齿形壁的这种独特行为。

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