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Titlebook: Science and Technology of Nanostructured Magnetic Materials; George C. Hadjipanayis,Gary A. Prinz Book 1991 Springer Science+Business Medi

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Spin-Resolved Photoemissionsurfaces and in thin films. Though not all complexities of the emission process have yet been fully incorporated into the analysis of photoemission spectra (one such problem is temperature), and though samples with complicated unit cells still pose severe problems for theory and experiment, a number
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Correlation of Crystalline and Electronic Structure in Epitaxial FCC-Cobalt Monolayers on Cu(100)red system may be realized by epitaxially growing films of a ferromagnetic material on top of a suitable non-magnetic substrate. The magnetism of these systems, however, is strongly determined by the electronic structure of the films which in turn depends on their crystalline structure. The knowledg
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Hybrid Ferromagnetic/Semiconductor Structuresecular beam epitaxy systems commonly used for the growth of semiconductor films, has yielded a variety of new materials and structures which may prove useful for integrated electronics and integrated optical device applications. Examples are given for growth on GaAs and ZnSe, including magnetic sand
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Mossbauer Studies of Ultrathin Magnetic Films of Fe/Ag(100)ompletely dominant, represent a difficult challenge to the experimentalist. The Mossbauer effect utilizing Fe. has proved to be very useful tool in such investigations, since under favorable circumstances it can provide important information about both the physical and electronic structure of the fi
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Spin-Dependence of Absorbed and Reflected Current on FE(110) near surfaces. Electron reflection. and absorption. measurements have proven useful in identifying major features in the unoccupied electronic band structure of solids and their surfaces, as well as determining the effect of such band structures on electron scattering processes. The elastic reflect
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Exchange Coupled Films for Magneto-Optic Applications film to another can be used to control the switching characteristics of the medium. In simple systems the coupling can be characterized by an interfacial wall energy. When the magnetic layers are thin compared to the wall width, however, the wall energy model is not expected to hold.
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Surface Magnetostrictionharge distribution such as tailing of some of the itinerant charge density into the vacuum.. In 3d metals this surface charge redistribution often leaves the surface atoms more under the influence of the 3d charge which is primarily responsible for the attractive bonding interaction. Hence the latti
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