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Titlebook: Handbook of Magnetism and Magnetic Materials; J. M. D. Coey,Stuart S.P. Parkin Reference work 2021 Springer Nature Switzerland AG 2021 Mag

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Magnetic Domains, with the stray field energy being the most significant contribution. The reordering of domains in magnetic fields determines the magnetization curve, domains can be engineered on purpose, and they can be applied in devices. In this chapter a review of the basics of magnetic domains is presented. I
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Magnetotransporte electrical resistivity and a discussion of magnetoresistance in normal metals, semiconductors, and semimetals. This is followed by a description of magnetoresistance processes in ferromagnets: from anisotropic magnetoresistance and critical scattering in bulk ferromagnets to giant magnetoresistanc
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Magnetostriction and Magnetoelasticity are distinguished. Various magnetoelastic phenomena are introduced, but the emphasis is on magnetostriction in bulk samples and thin films. The equations for magnetostrictive and magnetoelastic coefficients are derived for cubic, hexagonal, and isotropic systems. Experiments on the measurement of t
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Magnetism of the Elementsin bulk form – iron, cobalt, nickel, manganese, chromium, most of the rare earths and oxygen. All except oxygen are metals. The importance of spin polarisation at the Fermi level is illustrated by the three room-temperature ferromagnets: iron, cobalt and nickel. Manganese and chromium are atypical a
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Metallic Magnetic Thin Filmsn magnetic metal and their alloy films via MBE. Several metastable structure phases are obtained in the ultrathin film. For example, the body-centered cubic (bcc) phase of Ni, which does not exist in nature, can be epitaxially grown on GaAs (001). It is found that the interface structure and film gr
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