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Titlebook: Electron Correlations and Materials Properties 2; A. Gonis,N. Kioussis,M. Ciftan Book 2003 Springer-Verlag US 2003 chemistry.crystal.elect

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Spectral Density Functional Approach to Electronic Correlations and Magnetism in Crystalshange approximation (TM-FLEX). We end with a discussion of cluster generalization of the non-local DMFT scheme and its applications to the magnetism and superconductivity of the high-T. superconductors.
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The Kondo-Lattice Model for Cerium Compounds second, we describe the antiferromagnetic to Kondo transition; and third, the spin-glass to Kondo transition, both as a function of the intra-site interaction for a finite inter-site interaction. Comparison with experimental data in cerium systems is presented.
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rkshops is to provide a periodic (triennial) and in-depth assessment of advances in the study and understanding of the effects that electron-electron interactions in solids have on the determination of measurable properties of materials. The workshop is structured to include exposure to experimental
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High Speed Rail and Access Transit Networksd ferroelastic. Accompanying the transition are a change from metallic to insulating behaviour and the onset of antiferromagnetic order.. The metal-insulator transition is viewed as a classic Mott transition, in which spin and orbital degrees of freedom are independent.
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Superalloy Technology - Today and Tomorrowor certain cases of strong correlation, they fail dramatically for others. It is suggested that the new self-correlation-free meta-GGA’s and self-interaction-free hyper-GGA’s might yield a more reliable description of strong correlation.
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Book 2003 to provide a periodic (triennial) and in-depth assessment of advances in the study and understanding of the effects that electron-electron interactions in solids have on the determination of measurable properties of materials. The workshop is structured to include exposure to experimental work, to
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Size and Interface Effects in Patterned Magnetic and Superconducting Thin Films given of state-of-art methods of fabricating highly ordered arrays of ferromagnetic features precisely patterned by electron beam and laser interference techniques. Certain directions for future research in the theoretical description of small magnetic features, and the crucial role of mesoscale phenomena in nanotechnology are discussed.
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