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Please use this identifier to cite or link to this item: http://ir.ncue.edu.tw/ir/handle/987654321/15421

Title: Vortex Motion in Magnetic Disks with Different Geometric Asymmetry
Authors: Wu, Kuo-Ming;Wang, Jia-Feng;Wu, Yin-Hao;Lee, Ching-Ming;Wu, Jong-Ching;Horng, Lance
Contributors: 物理學系
Date: 2008
Issue Date: 2013-02-05T02:20:17Z
Publisher: American Institute of Physics
Abstract: An asymmetric disk achieves control over the clockwise and counterclockwise vortex states in a magnetic disk with an in-plane magnetic field. In this study, the influence of different geometric asymmetry on the vortex motion in 800 nm disks has been studied. The excised angle, defined as half of the center angle corresponding to the excised arc, is flatted varying from 15° to 90°. For each asymmetric degree disk, the vortex motion is investigated through anisotropic magnetoresistance measurement and hysteresis loops recorded by focused magneto-optic Kerr effect magnetometry. The vortex nucleation and annihilation fields show strong dependence and different sensitivity on the asymmetry of disk. An interestingly evident switching mode change is also observed at particular excised angle. Numerical simulations, corresponding to realistically identical system, are calculated and agree well with the experimental results.
Relation: J. .Appl. Phys., 103(7): 07F314
Appears in Collections:[Department of Physics] Periodical Articles

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