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Titlebook: SSP 2004; Proceedings of the 8 K. K. Kadyrzhanov,V. S. Rusakov Conference proceedings 2006 Springer-Verlag Berlin Heidelberg 2006 Hyperfine

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The Electronic and Magnetic Properties of FCC Iron Clusters in FCC 4D Metals, magnetic moments and hyperfine parameters are calculated in the ferromagnetic and the antiferromagnetic regions. In addition, the average local moment in iron-palladium alloys is calculated and compared to experimental results.
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Magnetic Phase Transitions in Nanoclusters and Nanostructures, transition was described in terms of magnetic critical size of cluster. The action of high pressure (up to 2 GPa) with shear (120–240°) was effective for defect generation and nanostructure formation. For nanosystems including iron oxide nanoclusters, adamantane and metallic europium and subjected
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,How can Mössbauer Spectrometry Contribute to the Characterization of Nanocrystalline Alloys?,e resulting macroscopic parameters. In order to understand correlation between the microstructure and the resulting magnetic behaviour, Mössbauer spectrometry is used as a method of local probe analysis. Possibilities of this technique are discussed and representative examples of investigation of NANOPERM-type nanocrystalline alloys are provided.
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The Electronic and Magnetic Properties of FCC Iron Clusters in FCC 4D Metals,tion of cluster size and lattice relaxation. It was found that unrelaxed iron clusters, remain ferromagnetic as the cluster sizes increase, while for relaxed clusters antiferromagnetism develops as the size increases depending on the host metal. For iron in Rh the magnetic structure changes from fer
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