DocumentCode :
1332382
Title :
Micromagnetic Studies on Stripe Domain in Soft-Magnetic Thin Films
Author :
Hailong Xie ; Hongjia Li ; Kaiming Zhang ; Fu Zheng ; Yuanfu Lou ; Zhenghua Li ; Jianmin Bai ; Fulin Wei ; Dan Wei
Author_Institution :
Key Lab. for Magn. & Magn. Mater., Lanzhou Univ., Lanzhou, China
Volume :
47
Issue :
10
fYear :
2011
Firstpage :
3527
Lastpage :
3530
Abstract :
In this paper, the influence of the magnetostriction effect on the formation of the stripe domain is studied by micromagnetic simulations. The microstructures and local stress are carefully investigated in soft-magnetic thin films with a thickness from 2 to 256 nm. The domain structures, as well as the M-H loops, of these thin films are calculated by applying the in-plane periodic boundary conditions. It is found that a critical angle φ0 , which is the minimum angle between the magnetoelastic fields Hms in neighbor stripes, exists for the formation of the stripe domains in a thin film. Furthermore, φ0 depends on the maximum angle between the Hms and the boundary line of neighbor stripes. The second-order derivative of the vertical component of the magnetic stray field which corresponding to the magnetic force microscope signal is also simulated. The M-H loop is calculated in a large thin film with an assumption that the stripe domains are isotropic in-plane. The shapes of these hysteresis loops can also be an indicator of the stripe-domain configuration.
Keywords :
cobalt alloys; crystal microstructure; iron alloys; magnetic domains; magnetic force microscopy; magnetic hysteresis; magnetic thin films; magnetoelastic effects; magnetostriction; metallic thin films; micromagnetics; soft magnetic materials; FeCo; critical angle; hysteresis loops; in-plane periodic boundary conditions; local stress; magnetic force microscope signal; magnetic stray field; magnetoelastic fields; magnetostriction effect; micromagnetic simulations; microstructures; size 2 nm to 256 nm; soft-magnetic thin films; stripe domain structures; Magnetic domains; Magnetostriction; Micromagnetics; Perpendicular magnetic anisotropy; Saturation magnetization; Magnetostriction; micromagnetic model; microstructure; stripe domain;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2011.2160157
Filename :
6028213
Link To Document :
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