DocumentCode
1398597
Title
Micromagnetic Simulations on GPU, A Case Study: Vortex Core Switching by High-Frequency Magnetic Fields
Author
Van de Wiele, Ben ; Vansteenkiste, Arne ; Kammerer, Matthias ; Van Waeyenberge, Bartel ; Dupré, Luc ; De Zutter, Daniël
Author_Institution
Dept. of Electr. Energy, Syst. & Autom., Ghent Univ., Gent, Belgium
Volume
48
Issue
6
fYear
2012
fDate
6/1/2012 12:00:00 AM
Firstpage
2068
Lastpage
2072
Abstract
Since magnetic vortex cores have two ground states, they are candidates for digital memory bits in future magnetic random access memory (MRAM) devices. Vortex core switching can be induced by exciting the gyrotropic eigenmode, e.g., by applying cyclic magnetic helds with typically a sub-gigahertz frequency. However, recent studies reveal that other modes exist that can be excited at higher frequencies, but still lead to switching with relatively small held amplitudes. Here, we perform a full scan of the frequency/amplitude parameter space to explore such excitation modes. The enormous amount of simulations can only be performed in an acceptable time span when the micromagnetic (CPU) simulations are drastically accelerated. To this aim, we developed MUMAX, a GPU-based software tool that speeds up micromagnetic simulations with about two orders of magnitude compared to standard CPU micromagnetic tools. By exploiting MUMAX´s numerical power we were able to explore new switching opportunities at moderate held amplitudes in the frequency range between 5 and 12 GHz.
Keywords
graphics processing units; ground states; magnetic cores; magnetic switching; micromagnetics; parameter space methods; vortices; GPU-based software tool; MRAM; MUMAX numerical power; acceptable time span; digital memory bits; excitation modes; frequency 5 GHz to 12 GHz; frequency-amplitude parameter space; ground states; gyrotropic eigenmodes; high-frequency cyclic magnetic fields; magnetic random access memory devices; magnetic vortex core switching; micromagnetic simulations; standard CPU micromagnetic tools; subgigahertz frequency; Graphics processing unit; Magnetic cores; Magnetic resonance; Magnetic switching; Magnetostatics; Micromagnetics; Switches; Graphical processing units; magnetic cores; simulation software;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2011.2179551
Filename
6104152
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