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 #  AuthorTitleAccn#YearItem Type Claims
1 Scheffler, Matthias Walter Kohn I11493 2003 eBook  
2 Zabloudil, Jan Electron Scattering in Solid Matter I07012 2005 eBook  
3 Turek, Ilja Electronic Structure of Disordered Alloys, Surfaces and Interfaces I00572 1997 eBook  
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1.    
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TitleWalter Kohn : Personal Stories and Anecdotes Told by Friends and Collaborators
Author(s)Scheffler, Matthias;Weinberger, Peter
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2003.
DescriptionXVIII, 310 p : online resource
Abstract NoteThis is not a science book, nor even a book about science, although most of the contributors are scientists. It is a book of personal stories about Walter Kohn, a theoretical physicist and winner of half of the 1998 Nobel Prize in Chemistry. Walter Kohn originated and/or refined a number of very important theoretical approaches and concepts in solid-state physics. He is known in particular for Density-Functional Theory. This book represents a kind of "oral history" about him, gathered - in anticipation of his 80th birthday - from former students, collaborators, fellow-scientists, and friends
ISBN,Price9783642556098
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. PHYSICAL CHEMISTRY 4. PHYSICS 5. Physics, general
Item TypeeBook
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I11493     On Shelf    

2.     
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TitleElectron Scattering in Solid Matter : A Theoretical and Computational Treatise
Author(s)Zabloudil, Jan;Hammerling, Robert;Szunyogh, L??szlo;Weinberger, Peter
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 2005.
DescriptionXVI, 382 p : online resource
Abstract NoteAddressing graduate students and researchers, this book gives a very detailed theoretical and computational description of multiple scattering in solid matter. Particular emphasis is placed on solids with reduced dimensions, on full potential approaches and on relativistic treatments. For the first time approaches such as the Screened Korringa-Kohn-Rostoker method that have emerged during the last 5 ??? 10 years are reviewed, considering all formal steps such as single-site scattering, structure constants and screening transformations, and also the numerical point of view. Furthermore, a very general approach is presented for solving the Poisson equation, needed within density functional theory in order to achieve self-consistency. Going beyond ordered matter and translationally invariant systems, special chapters are devoted to the Coherent Potential Approximation and to the Embedded Cluster Method, used, for example, for describing nanostructured matter in real space. In a final chapter, physical properties related to the (single-particle) Green???s function, such as magnetic anisotropies, interlayer exchange coupling, electric and magneto-optical transport and spin-waves, serve to illustrate the usefulness of the methods described
ISBN,Price9783540270010
Keyword(s)1. CONDENSED MATTER 2. CONDENSED MATTER PHYSICS 3. EBOOK 4. EBOOK - SPRINGER 5. Heavy ions 6. NUCLEAR PHYSICS 7. Nuclear Physics, Heavy Ions, Hadrons 8. Particle acceleration 9. Particle Acceleration and Detection, Beam Physics
Item TypeeBook
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I07012     On Shelf    

3.    
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TitleElectronic Structure of Disordered Alloys, Surfaces and Interfaces
Author(s)Turek, Ilja;Drchal, V??clav;Kudrnovsk??, Josef;Sob, Mojm??r;Weinberger, Peter
PublicationNew York, NY, Springer US, 1997.
DescriptionXV, 317 p : online resource
Abstract NoteAt present, there is an increasing interest in the prediction of properties of classical and new materials such as substitutional alloys, their surfaces, and metallic or semiconductor multilayers. A detailed understanding based on a thus of the utmost importance for fu?? microscopic, parameter-free approach is ture developments in solid state physics and materials science. The interrela?? tion between electronic and structural properties at surfaces plays a key role for a microscopic understanding of phenomena as diverse as catalysis, corrosion, chemisorption and crystal growth. Remarkable progress has been made in the past 10-15 years in the understand?? ing of behavior of ideal crystals and their surfaces by relating their properties to the underlying electronic structure as determined from the first principles. Similar studies of complex systems like imperfect surfaces, interfaces, and mul?? tilayered structures seem to be accessible by now. Conventional band-structure methods, however, are of limited use because they require an excessive number of atoms per elementary cell, and are not able to account fully for e.g. substitu?? tional disorder and the true semiinfinite geometry of surfaces. Such problems can be solved more appropriately by Green function techniques and multiple scattering formalism
ISBN,Price9781461562559
Keyword(s)1. Characterization and Evaluation of Materials 2. EBOOK 3. EBOOK - SPRINGER 4. Electronic materials 5. MATERIALS SCIENCE 6. MATHEMATICAL PHYSICS 7. MICROSCOPY 8. Optical and Electronic Materials 9. OPTICAL MATERIALS 10. SOLID STATE PHYSICS 11. SPECTROSCOPY 12. Spectroscopy and Microscopy 13. Theoretical, Mathematical and Computational Physics
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I00572     On Shelf    

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