Photoemission and Absorption Spectroscopy of Solids and Interfaces with Synchrotron Radiation: Varenna on Lake Como, Villa Monastero, 12-22 July 1988
M. Campagna, R. Rosei, SocietÓ italiana di fisica
North-Holland, 1990 - Science - 488 pages
Synchrotron radiation has become a very important tool for investigating condensed matter. Many different techniques have been developed which can provide information on the electronic and the geometric structure of solids and surfaces. At the heart of them all is the phenomenon of interaction of electromagnetic radiation with condensed matter. At a time when new extremely powerful third-generation synchrotron radiation sources are being planned and built, this volume presents a timely overview of the present status of synchrotron radiation research and includes the background fundamental theoretical aspects of electronic structure of condensed matter and of condensed-matter interaction with photons.
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Electronic response at surfaces
B DELLEY Dynamical effects screening and correlation in mixed
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absorption adsorbate amplitude analysis angle applied approximation atoms band bond bulk calculations charge clusters compared core level corresponding Course curve density dependence determined direction discussed distance edge edited effects electron element emission example excited experiment experimental Fermi field Figure final function given gives hole important incidence increases intensity interaction interface layer length Lett light limit magnetic mean measured metal method molecules normal observed obtained particles peak phase photoelectron photoemission photon energy Phys Physics plane polarization position possible potential problem properties range reference reflection region relative resonance respectively sample scattering screening semiconductor SEXAFS shell shift shown in fig shows simple solid spectra spectroscopy spectrum spin structure substrate Surf surface synchrotron radiation taken techniques temperature theory transition valence vector wave X-ray yield