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Titlebook: Concepts in Electron Correlation; Alex C. Hewson,Veljko Zlatić Book 2003 Springer Science+Business Media Dordrecht 2003 band structure.con

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楼主: firearm
发表于 2025-3-23 10:58:24 | 显示全部楼层
Orbital Physics Versus Spin Physics: the Orbital-Hubbard Model,in orbital space has important implications — superexchange contributes in all orbital ordered states, the Nagaoka theorem does not apply, and the kinetic energy is enhanced as compared with the spin case. As a result orbital-ordered states are destabilized by doping, and instead a strongly correlated . with disordered orbitals is realized.
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Heavily Doped Semiconductors: Magnetic Moments, Electron-Electron Interactions and the MetalInsulatting samples — by application of uniaxial stress . The continuous stress tuning allows the observation of dynamic scaling of σ(.) and hence a reliable determination of the critical exponent . of the extrapolated zerotemperature conductivity σ(0) ~∣ . — .. ∣., i.e. . = 1, and of the dynamical exponent .
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1568-2609 iod from the 29th of September to the 3rd of October, 2002. The topic of electron correlation is a fundamental one in the field of condensed matter, and one that is being very actively studied both experimentally and theoretically at the present time. The manifestations of electron cor­ relation are
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On Applications: Topological Inference,isingly large c-axis dispersion due to hybridization with unoccupied cation .-states in the adjacent layers. Hence, they must have relevance to .-axis magnetic coupling. In view of this situation, the Emery model is incomplete for the description of magnetism of undoped cuprates.
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Mikael Vejdemo-Johansson,Alisa Leshchenkooptical photon case of Raman scattering and the X-ray photon scattering case which exchanges both energy and momentum with the charge excitations. A number of formal details that have not appeared elsewhere are included here.
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https://doi.org/10.1007/978-3-319-71507-0spersion on the orbiton energy scale is modified by orbital polarization and by electron-lattice coupling. A lower QP dispersion and quantum decoherence are obtained due to the inter-planar hole-magnon scattering in the .AF phase which disproves the classical concept of a ferromagnetic polaron.
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,The ‘Grenoble’ Cosmological Experiment,er Au concentration, hydrostatic pressure, or magnetic field. In the system UC..-.Pd., strong disorder affects the NFL properties. The d-electron Laves phase ZrZn. was recently found to display superconductivity in coexistence with itinerant ferromagnetism.
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