article Open AccessTop 1% cited
Atomistic spin model simulations of magnetic nanomaterials
Journal of Physics Condensed Matter · 2014 · Vol. 26(10) · pp. 103202–103202
R F L Evans✉(University of York)W J Fan(University of York)P Chureemart(University of York)T A Ostler(University of York)M O A Ellis(University of York)R W Chantrell(University of York)
Abstract
Atomistic modelling of magnetic materials provides unprecedented detail about the underlying physical processes that govern their macroscopic properties, and allows the simulation of complex effects such as surface anisotropy, ultrafast laser-induced spin dynamics, exchange bias, and microstructural effects. Here we present the key methods used in atomistic spin models which are then applied to a range of magnetic problems. We detail the parallelization strategies used which enable the routine simulation of extended systems with full atomistic resolution.
Magnetic properties of thin filmsChemical and Physical Properties of MaterialsAdvanced X-ray Imaging TechniquesSpin (aerodynamics)NanomaterialsRange (aeronautics)Spin modelMicromagneticsSpin engineeringMolecular dynamicsMagnetism
MeSH terms
Computer SimulationElectromagnetic FieldsModels, ChemicalQuantum TheorySpin LabelsModels, StatisticalNanoparticles
Funding
- Engineering and Physical Sciences Research Council
Citations
808
FWCI
15.40
field-weighted impact
References
120
Percentile
99%
vs. same field & year
Citations per year
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