Numerical computation of magnetic fields applied to magnetic force microscopy
Author(s) -
Thomas Preisner,
Michael Greiff,
Uzzal Binit Bala,
Wolfgang Mathis
Publication year - 2009
Publication title -
compel the international journal for computation and mathematics in electrical and electronic engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.255
H-Index - 31
eISSN - 2054-5606
pISSN - 0332-1649
DOI - 10.1108/03321640910918922
Subject(s) - magnetic force microscope , cantilever , magnetic field , microscope , finite element method , coupling (piping) , computation , computer science , mechanics , materials science , physics , optics , magnetization , algorithm , quantum mechanics , metallurgy , composite material , thermodynamics
Purpose – The purpose of this paper is to introduce a method which allows the calculation of the interactions of tip and sample of a magnetic force microscope as a first step to increase the accuracy of this technique.Design/methodology/approach – The emerging magnetic interactions between the cantilever tip and an arbitrary magnetized sample can be evaluated by the use of several numerical methods. For modelling this magnetically and mechanically coupled multiscale problem the finite element method is implemented.Findings – The evaluated magnetic fields interact in such a manner that a constructive overlap at the tip apex occurs. This leads to attractive forces acting on the cantilever.Research limitations/implications – In order to include the magneto‐mechanical coupling, the implementation of a detailed force calculation is necessary. Furthermore, a hysteresis model is not yet considered.Practical implications – Magnetic force microscopy is a very sensitive technique. For instance, ideally the end of t...
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