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首页> 外文期刊>Physical review >Magnetic vortices in tridimensional nanomagnetic caps observed using transmission electron microscopy and magnetic force microscopy
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Magnetic vortices in tridimensional nanomagnetic caps observed using transmission electron microscopy and magnetic force microscopy

机译:使用透射电子显微镜和磁力显微镜观察三维纳米磁帽中的磁涡

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摘要

Magnetic domain formation on three-dimensional nanostructures was investigated. Co/Pd multilayers were deposited on polystyrene nanospheres (50-1000 nm) to form a magnetic cap with variable thickness. High resolution transmission electron microscopy and magnetic force microscopy images, allied with micromagnetic simulations, were used to correlate the three-dimensional shape of the caps with their domain structures. For smaller spheres (50-100 nm), the caps are segmented into nanopillars (approx=10 nm) oriented toward the radial direction. For larger spheres (500-1000 nm), the cap is a continuous film with the magnetization forming a vortex at the top of the cap, with a core well larger than the ones observed in planar disks.
机译:研究了三维纳米结构上的磁畴形成。将Co / Pd多层膜沉积在聚苯乙烯纳米球(50-1000 nm)上,以形成厚度可变的磁帽。高分辨率透射电子显微镜和磁力显微镜图像与微磁模拟相结合,用于将瓶盖的三维形状与其畴结构相关联。对于较小的球体(50-100 nm),将盖分成面向径向的纳米柱(大约= 10 nm)。对于较大的球体(500-1000 nm),盖是连续的膜,其磁化强度在盖的顶部形成涡旋,其芯远大于在平面磁盘中观察到的芯。

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