4.4 Article

Fast and Accurate Calculation of the Demagnetization Tensor for Systems With Periodic Boundary Conditions

Journal

IEEE TRANSACTIONS ON MAGNETICS
Volume 49, Issue 8, Pages 4749-4755

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TMAG.2013.2241072

Keywords

Accurate simulation; demagnetization field; finite difference method; micromagnetic simulator; micromagnetism; periodic boundary conditions

Funding

  1. City of Hamburg via the Landesexzellenzinitiative
  2. Deutsche Forschungsgemeinschaft [Graduiertenkolleg 1286, Sonderforschungsbereich SFB 668]

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In micromagnetic simulations, the magnetization in one simulation cell is acted upon by the demagnetization field that is generated by all simulation cells. In simulations with periodic boundary conditions, this leads to an infinite number of interactions that have to be taken into account. A method is presented that allows for an accurate calculation of the demagnetization tensor with one and two-dimensional periodic boundary conditions using a small amount of computation time. The method has been implemented in a micromagnetic simulation tool. For a reasonable accuracy and two-dimensional periodic boundary conditions the presented method is about six orders of magnitude faster than the straightforward method in which all cells beyond a certain distance are neglected.

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