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OverviewAt 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. Full Product DetailsAuthor: Ilja Turek , Václav Drchal , Josef Kudrnovský , Mojmír SobPublisher: Springer-Verlag New York Inc. Imprint: Springer-Verlag New York Inc. Edition: Softcover reprint of the original 1st ed. 1997 Dimensions: Width: 15.50cm , Height: 1.80cm , Length: 23.50cm Weight: 0.516kg ISBN: 9781461378709ISBN 10: 1461378702 Pages: 317 Publication Date: 23 February 2014 Audience: Professional and scholarly , Professional & Vocational Format: Paperback Publisher's Status: Active Availability: Manufactured on demand ![]() We will order this item for you from a manufactured on demand supplier. Table of ContentsPreface. 1. Introduction. 2. Linear Muffin-Tin Orbital (LMTO) Method. 3. Green Function Method. 4. Coherent Potential Approximation (CPA). 5. Selfconsistency within Atomic Sphere Approximation. 6. Relativistic Theory. 7. Bulk Systems, Overlayers and Surfaces. 8. Magnetic Properties. 9. Effective Interatomic Interactions in Alloys. 10. Numerical Implementation. Index.ReviewsAuthor InformationTab Content 6Author Website:Countries AvailableAll regions |