Jan Zabloudil Robert Hammerling Lászlo Szunyogh Peter Weinberger Zabloudil Electron Scattering in Solid Matter

Electron Scattering in Solid Matter

von Jan Zabloudil Robert Hammerling Lászlo Szunyogh Peter Weinberger

A Theoretical and Computational Treatise

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Beschreibung

Addressing 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.


Addressing 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 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. 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.


With a foreword by Walter Kohn (Nobel Prize for Chemistry 1998) Includes supplementary material: sn.pub/extras

Autor*in

Jan Zabloudil

Themen in »Electron Scattering in Solid Matter«

Green's functions Helium-Atom-Streuung Magnetism Nanostructures Relativistic electron theory STEM Scattering theory

Stimmen zu »Electron Scattering in Solid Matter«

Details

ISBN: 9783540270010
Verlag: Springer Berlin
Erscheinung: 12.12.2005

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