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 #  AuthorTitleAccn#YearItem Type Claims
1 Bechstedt, Friedhelm Principles of Surface Physics I11332 2003 eBook  
2 Bechstedt, Friedhelm Many-Body Approach to Electronic Excitations I07600 2015 eBook  
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TitlePrinciples of Surface Physics
Author(s)Bechstedt, Friedhelm
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2003.
DescriptionXII, 342 p : online resource
Abstract NoteThis comprehensive and innovative text provides an understanding of the geometric and electronic structure of surfaces. It addresses the surfaces of covalent and ionic solids and also metals. The book emphasizes fundamental aspects, such as the principles of surface crystallography and thermodynamics, the forces driving the rearrangement of the atoms, and the relationship between bonding and electronic structure. The book illuminates the relationship between surface orientation, chemistry, energetics, and the resulting properties. The text includes a discussion of elementary excitations at surfaces, their description and measurement. The general physical arguments and methods presented in the book will also allow the reader to analyse novel surfaces and interfaces of new materials. This makes the book an indispensable reference to all those studying growth, surface-molecule interactions, self-assembled structures, property engineering and materials development
ISBN,Price9783642554667
Keyword(s)1. Characterization and Evaluation of Materials 2. CONDENSED MATTER 3. CONDENSED MATTER PHYSICS 4. EBOOK 5. EBOOK - SPRINGER 6. MATERIALS SCIENCE 7. Materials???Surfaces 8. Measurement Science and Instrumentation 9. Measurement?????? 10. PHYSICAL CHEMISTRY 11. PHYSICAL MEASUREMENTS 12. Surfaces and Interfaces, Thin Films 13. THIN FILMS
Item TypeeBook
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I11332     On Shelf    

2.    
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TitleMany-Body Approach to Electronic Excitations : Concepts and Applications
Author(s)Bechstedt, Friedhelm
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2015.
DescriptionXXXI, 584 p. 235 illus., 193 illus. in color : online resource
Abstract NoteThe many-body-theoretical basis and applications of theoretical spectroscopy of condensed matter, e.g. crystals, nanosystems, and molecules are unified in one advanced text for readers from graduate students to active researchers in the field. The theory is developed from first principles including fully the electron-electron interaction and spin interactions. It is based on the many-body perturbation theory, a quantum-field-theoretical description, and Green's functions. The important expressions for ground states as well as electronic single-particle and pair excitations are explained. Based on single-particle and two-particle Green's functions, the Dyson and Bethe-Salpeter equations are derived. They are applied to calculate spectral and response functions. Important spectra are those which can be measured using photoemission/inverse photoemission, optical spectroscopy, and electron energy loss/inelastic X-ray spectroscopy. Important approximations are derived and discussed in the light of selected computational and experimental results. Some numerical implementations available in well-known computer codes are critically discussed.The book is divided into four parts: (i) In the first part the many-electron systems are described in the framework of the quantum-field theory. The electron spin and the spin-orbit interaction are taken into account. Sum rules are derived. (ii) The second part is mainly related to the ground state of electronic systems. The total energy is treated within the density functional theory. The most important approximations for exchange and correlation are delighted. (iii) The third part is essentially devoted to the description of charged electronic excitations such as electrons and holes. Central approximations as Hedin's GW and the T-matrix approximation are discussed.(iv) The fourth part is focused on response functions measured in optical and loss spectroscopies and neutral pair or collective excitations
ISBN,Price9783662445938
Keyword(s)1. CLASSICAL ELECTRODYNAMICS 2. EBOOK 3. EBOOK - SPRINGER 4. ELECTRODYNAMICS 5. MICROSCOPY 6. MICROWAVES 7. Microwaves, RF and Optical Engineering 8. Numerical and Computational Physics, Simulation 9. OPTICAL ENGINEERING 10. OPTICS 11. PHYSICS 12. SOLID STATE PHYSICS 13. SPECTROSCOPY 14. Spectroscopy and Microscopy
Item TypeeBook
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I07600     On Shelf    

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