Core-level spectroscopy in condensed systems: proceedings of the Tenth Taniguchi International Symposium, Kashikojima, Japan, October 19-23, 1987
Junjirō Kanamori, Akio Kotani
Springer-Verlag, 1988 - Science - 303 pages
Core-level Spectroscopy in Condensed Systems describes how recent improvement of various experimental methods, together with new light and x-ray sources, have provided fresh information about the electronic states and atomic structures of a wide variety of materials. The topics coveredrange from the high-energy spectroscopy of bulk electronic states of rare-earth and transition metals and compounds, including high T superconductors, to recent developments in photoelectron diffraction and other surface problems, all with emphasis on theoretical aspects.
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ManyBody Effects in CoreLevel Spectroscopy of Solids
Theory of High Energy Spectroscopy in Ce02
Photoemission Spectra of CeCu2Si2 and CeInCu2
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3d electrons 4f partial EDC absorption spectra Anderson model approximation assumed atomic Auger azimuthal band gap Bianconi binding energy bulk calculated charge transfer conduction band core hole core-hole corresponding Coulomb interaction covalent cross section crystal field curve dihalides discussed effects electron correlation electronic structure emission energy band EXAFS exciton experimental f configuration ferromagnetic final Fujimori G.A. Sawatzky Green's function Gunnarsson Hamiltonian hybridization impurity insulating intensity ionic Kotani Lett ligand magnetic matrix elements multiple scattering multiplet observed obtained one-electron orbitals parameters peak photoabsorption photoelectron photoemission spectra photon photon energy Phys plasmon polarized potential satellite screening self-energy shown in Fig Solid State Commun spectral density spectrum spin spin-orbit sudden approximation superconducting surface symmetry temperature theoretical theory transition metal transition metal compounds valence band valence electrons values x-ray XANES XANES spectra XPS spectra