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Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures Book

Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures
Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures, Here, leading scientists present an overview of the most modern experimental and theoretical methods for studying electronic correlations on surfaces, in thin films and in nanostructures. In particular, they describe in detail coincidence techniques for s, Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures has a rating of 3 stars
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Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures, Here, leading scientists present an overview of the most modern experimental and theoretical methods for studying electronic correlations on surfaces, in thin films and in nanostructures. In particular, they describe in detail coincidence techniques for s, Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures
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  • Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures
  • Written by author Jamal Berakdar
  • Published by Wiley, John & Sons, Incorporated, August 2004
  • Here, leading scientists present an overview of the most modern experimental and theoretical methods for studying electronic correlations on surfaces, in thin films and in nanostructures. In particular, they describe in detail coincidence techniques for s
  • Here, leading scientists present an overview of the most modern experimental and theoretical methods for studying electronic correlations on surfaces, in thin films and in nanostructures. In particular, they describe in detail coincidence techniques for s
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1A first-principles scheme for calculating the electronic structure of strongly correlated materials : GW+DMFT1
2A many-body approach to the electronic and optical properties of copper and silver17
3Correlation spectroscopy of nano-size materials32
4Electron-electron coincidence studies on atomic targets : a review of (e,2e) and (e,3e) experiments42
5Studying the details of the electron-electron interaction in solids and surfaces58
6Two-electron spectroscopy versus single-electron spectroscopy for studying secondary emission from surfaces68
7EMS measurement of the valence spectral function of silicon - a test of many-body theory83
8Recent results from ([gamma],e[gamma]) and compton spectroscopy105
9Theory of (e,2e) spectroscopy from ferromagnetic surfaces118
10Ab-initio calculations of charge exchange in ion-surface collisions : an embedded-cluster approach130
11Coincident studies on electronic interaction mechanisms during scattering of fast atoms from a LiF(001) surface144
12Many-body effects in auger-photoelectron coincidence spectroscopy159
13Auger-photoelectron coincidence spectroscopy (APECS) of transition metal compounds174
14Relevance of the core hole alignment to auger-photoelectron pair angular distributions in solids
15Auger-photoelectron coincidence spectroscopy studies from surfaces197
16Development of new apparatus for electron - polar-angle-resolved-ion coincidence spectroscopy and auger-photoelectron coincidence spectroscopy206


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Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures, Here, leading scientists present an overview of the most modern experimental and theoretical methods for studying electronic correlations on surfaces, in thin films and in nanostructures. In particular, they describe in detail coincidence techniques for s, Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures

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Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures, Here, leading scientists present an overview of the most modern experimental and theoretical methods for studying electronic correlations on surfaces, in thin films and in nanostructures. In particular, they describe in detail coincidence techniques for s, Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures

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Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures, Here, leading scientists present an overview of the most modern experimental and theoretical methods for studying electronic correlations on surfaces, in thin films and in nanostructures. In particular, they describe in detail coincidence techniques for s, Correlation Spectroscopy of Surfaces, Thin Films, and Nanostructures

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