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Titlebook: Magnetism and Structure in Systems of Reduced Dimension; Robin F. C. Farrow,Bernard Dieny,B. D. Hermsmeier Book 1993 Springer Science+Busi

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Sempa Studies of Oscillatory Exchange Coupling,e whisker separated by either a Cr or Ag spacer layer. The thickness dependence of the oscillatory coupling in these atomically well ordered, epitaxial films was precisely measured. The periodicity of the exchange coupling is consistent with predictions based on Fermi surface spanning vectors of the
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Giant Magnetoresistance in Transition Metal Multilayers,h work has been carried out on systems comprised of low concentrations of magnetic atoms randomly distributed in metallic hosts, for example, Mn or Fe atoms dissolved in Cu or Au. It was found that the magnetic atoms are exchange-coupled via a spin polarization of the conduction electrons of the hos
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Perpendicular Magnetoresistance in Ag/Co and Cu/Co Multilayers,f magnetic multilayers of Ag and Co, and of Cu and Co. Because of the small resistances involved (~ 10.Ω) the measurements are considerably more difficult than those for the more usual orientation with .urrent .n the layer .lanes, (CIP-MR). However as we have recently shown., the interpretation is m
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The Influence of Magnetism and Structure on Transport Properties and Interlayer Coupling of Systems (MR) effect. This effect, first found in Fe/Cr multilayered structures, has now been observed in at least a dozen different combinations of magnetic and non-magnetic metallic layers. In addition, two groups have recently observed the effect for thin films containing magnetic particles, e.g., copper
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Magnetic and Magnetotransport Properties of Epitaxial (100)Fe/Pd Superlattices,for the interlayer (non-ferromagnetic) material. In particular, antiferromagnetic (AFM) coupling . the ferromagnetic (FM) layers has been found with both non-magnetic (Cu, Ag, Au) and antiferromagnetic (Cr, Mn) spacers.. Of special interest for applications is the existence of giant magnetoresistanc
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Bilinear and Biquadratic Exchange Coupling in BCC Fe/Cu/Fe Trilayers. Exchange Coupling in Fe Whiskn Fe(OOl) whisker/Cr/Fe(001) structures are presented. It is shown that the interfaces in bcc Fe/Cu/Fe(001) trilayers can be significantly improved by choosing an appropriate growth procedure. The exchange coupling in bcc Fe/Cu/Fe trilayers was studied as a function of the interlayer thickness. The
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What Rare Earths Teach about Thin Film Magnetism,77) and Jenson and Mackintosh (1991). The 4f core electrons remain distinct from the conduction states and couple according to Hund’s rules to form model magnetic materials, at least in simple compounds. The metallic state entails certain interesting complications. In particular, a portion of the co
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Chemical Ordering and Magnetic Anisotropy in MBE-Grown Co/Pt Multilayers,stence of interfacial mixing and extensive chemical ordering in the multilayers. We also report new magnetic data for epitaxial Co/Pt multilayers, grown along the 3 major axes: [111], [110] and [001], which demonstrate that both the interface anisotropy (K.) and volume anisotropy (K.) constants depe
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