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Titlebook: Handbook of Advanced Magnetic Materials; Vol 1. Nanostructura Yi Liu,David J. Sellmyer,Daisuke Shindo Book 2006 Springer-Verlag US 2006 Clu

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Atom Probe Characterization of Microstructures of Nanocrystalline and Nanocomposite Magnetic Materi8 by crystallizing the Fe-Si-B based amorphous alloy microalloyed with Cu and Nb (.). Due to exchange-coupled randomly oriented nanograms, the magnetocrystalline anisotropy of the Fe-based phase is averaged out, resulting in a low coercivity. The nanocomposite hard magnetic material was also reporte
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Modeling of Hysteresis in Magnetic Materials,y. Not only can the design cycle based on “trial and error” iteration be reduced and replaced with materials design from first principles, but also materials with higher performance can be achieved at a lower cost and with less effort if materials scientists are able to employ viable computer-aided
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Coarse-graining and Hierarchical Simulation of Magnetic Materials: the Fast Multipole Method,g with the long range of the magnetic dipole interaction. Traditionally this problem is deal with by a mean field approach, assuming that the effect of distant dipoles is to produce a magnetic field locally that is proportional to the total magnetization of the system. There is a huge amount of lite
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Graziella Benedetto,Gian Luigi Corintontifically and technologically very challenging. In particular, it was recognized that the ferromagnetic state, with a given orientation of the particle moment, has a remanent magnetization if the particle is small enough. This was the starting point of huge permanent magnets and magnetic recording
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