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Titlebook: Magnetic Nanostructures; Bekir Aktaş,Faik Mikailov,Lenar Tagirov Book 2007 Springer-Verlag Berlin Heidelberg 2007 Giant magnetoresistance.

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ts of insect physi­ ology, behaviour and ecology for many years. Several factors contribute to this popularity: their abundance in nature and their ease of culture in the laboratory, their relatively large size, and most of all, perhaps, their agricultural importance and the consequent intermittent
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Scanning Hall Probe Microscopy: Quantitative & Non-Invasive Imaging and Magnetometry of Magnetic Mate. They can be run in a wide range of temperatures and have unprecedented field resolution which is not affected by external fields. Local magnetometry of very small volumes is also feasible opening up very promising avenues for characterization of magnetic nanostructures.
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Self-Assembled FePt Nanoparticle Arrays as Potential High-Density Recording Mediarticles for future ultrahigh density data storage is mentioned. General chemical process for making magnetic nanoparticles and nanoparticle arrays is described. The synthetic progress that has been made so far and the problems indentified are summarize. Finally, possible future direction in the synt
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Selective Removal of Atoms as Basis for Ultra-High Density Nano-Patterned Magnetic and Other Mediaresult of selective removal of atoms by the certain energy ion beam. One of the most promising results of this effect is a production of devices with nanostructured high-density patterned magnetic media.
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Magnetization Reversal Studies of Periodic Magnetic Arrays via Scattering Methodsreversal mechanisms. We discuss magneto-optical, soft x-ray resonant scattering, and neutron scattering methods for evaluating the vector magnetization during reversal and the higher Fourier components of the magnetization distribution. These scattering methods, providing a statistical averaged sign
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Antiferromagnetic Interlayer Exchange Coupling Across Epitaxial Si Spacers a pseudomorphic phase stabilized by the interface is confirmed by low-energy electron diffraction and high-resolution transmission electron microscopy. The coupling strength decays with spacer thickness on a length scale of a few Å and shows a negative temperature coefficient. Transport measurement
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