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Magnetic anisotropy and domain patterns in electrodeposited cobalt nanowires

机译:电沉积钴纳米线的磁各向异性和畴图案

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摘要

The magnetic anisotropy and domain structure of electrodeposited cylindrical Co nanowires with length of 10 or 20 μm and diameters ranging from 30 to 450 nm are studied by means of magnetization and magnetic torque measurements, as well as magnetic force microscopy. Experimental results reveal that crystal anisotropy either concurs with shape anisotropy in maintaining the Co magnetization aligned along the wire or favours an orientation of the magnetization perpendicular to the wire, hence competing with shape anisotropy, depending on whether the diameter of the wires is smaller or larger than a critical diameter of 50 nm. This change of crystal anisotropy, originating in changes in the crystallographic structure of Co, is naturally found to strongly modify the zero (or small) field magnetic domain structure in the nanowires. Except for nanowires with parallel-to-wire crystal anisotropy (very small diameters) where single-domain behaviour may occur, the formation of magnetic domains is required to explain the experimental observations. The geometrical restriction imposed on the magnetization by the small lateral size of the wires proves to play an important role in the domain structures formed.
机译:通过磁化和磁转矩测量以及磁力显微镜研究了长度为10或20μm,直径为30至450 nm的电沉积圆柱形Co纳米线的磁各向异性和畴结构。实验结果表明,在保持Co磁化沿线排列时,晶体各向异性与形状各向异性同时存在,或者有利于磁化方向垂直于线,从而与形状各向异性竞争,这取决于线的直径是较小还是较大。大于50 nm的临界直径。自然地发现源自Co的晶体结构变化的这种晶体各向异性的变化强烈地改变了纳米线中的零(或小)磁场磁畴结构。除了具有可能发生单畴行为的平行线晶体各向异性(非常小直径)的纳米线之外,还需要形成磁畴来解释实验结果。导线的较小横向尺寸对磁化强度的几何限制证明在所形成的畴结构中起着重要作用。

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