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HIGH ACCURACY NUMERICAL METHOD OF THIN-FILM PROBLEMS IN MICROMAGNETICS
引用本文:Zhongyi Huang (Deft,of Mathematical Sciences,Tsinghua University,Beijing,100084,China). HIGH ACCURACY NUMERICAL METHOD OF THIN-FILM PROBLEMS IN MICROMAGNETICS[J]. 计算数学(英文版), 2003, 0(1)
作者姓名:Zhongyi Huang (Deft  of Mathematical Sciences  Tsinghua University  Beijing  100084  China)
作者单位:Deft,of Mathematical Sciences,Tsinghua University,Beijing,100084,China
基金项目:This work was supported by the Climbing Program of National Key Project of Foundation.
摘    要:In this paper, a new high accuracy numerical method for the thin-film problems of micron and submicron size ferromagnetic elements is proposed. For the computation of stray field, we use the finite element method(FEM) by introducing a semi-discrete artificial boundary condition [1, 2]. In our numerical experiments about the domain patterns and their movement, we can see that the results are accordant to that of experiments and other numerical methods. Our method are very convenient to deal with arbitrary shape of thin films such as a polygon with high accuracy.


HIGH ACCURACY NUMERICAL METHOD OF THIN-FILM PROBLEMS IN MICROMAGNETICS
Zhongyi Huang. HIGH ACCURACY NUMERICAL METHOD OF THIN-FILM PROBLEMS IN MICROMAGNETICS[J]. Journal of Computational Mathematics, 2003, 0(1)
Authors:Zhongyi Huang
Abstract:In this paper, a new high accuracy numerical method for the thin-film problems of micron and submicron size ferromagnetic elements is proposed. For the computation of stray field, we use the finite element method(FEM) by introducing a semi-discrete artificial boundary condition [1, 2]. In our numerical experiments about the domain patterns and their movement, we can see that the results are accordant to that of experiments and other numerical methods. Our method are very convenient to deal with arbitrary shape of thin films such as a polygon with high accuracy.
Keywords:Thin-film   Micromagnetics   stray field   Semi-discrete artificial boundary condition.
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