Superscale simulation of the magnetic states and reconstruction of the ordering types for nanodots arrays

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We consider two possible computational methods of the interpretation of experimental data obtained by means of the magnetic force microscopy. These methods of macrospin distribution simulation and reconstruction can be used for research of magnetization reversal processes of nanodots in ordered 2D arrays of nanodots. New approaches to the development of high-performance superscale algorithms for parallel executing on a supercomputer clusters for solving direct and inverse task of the modeling of magnetic states, types of ordering, reversal processes of nanosystems with a collective behavior are proposed. The simulation results are consistent with experimental results.

Keywords: Magnetic-force microscopy, magnetic states, high performance calculations, superscaling
Citation in English: Kapitan V.U., Peretyat'ko A.A., Ivanov U.P., Nefedev K.V., Belokon V.I. Superscale simulation of the magnetic states and reconstruction of the ordering types for nanodots arrays // Computer Research and Modeling, 2011, vol. 3, no. 3, pp. 309-318
Citation in English: Kapitan V.U., Peretyat'ko A.A., Ivanov U.P., Nefedev K.V., Belokon V.I. Superscale simulation of the magnetic states and reconstruction of the ordering types for nanodots arrays // Computer Research and Modeling, 2011, vol. 3, no. 3, pp. 309-318
DOI: 10.20537/2076-7633-2011-3-3-309-318
According to Crossref, this article is cited by:
  • Vitalii Kapitan, Konstantin Nefedev, Alexey Peretyatko. Supercomputer data processing and simulation of MFM and STM experiments. — 2014. — P. 1. DOI: 10.1109/IVESC.2014.6892003
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