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The augmented spherical wave method : a comprehensive treatment / / Volker Eyert



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Autore: Eyert Volker Visualizza persona
Titolo: The augmented spherical wave method : a comprehensive treatment / / Volker Eyert Visualizza cluster
Pubblicazione: Berlin ; ; New York, : Springer, c2012
Edizione: 2nd ed.
Descrizione fisica: 1 online resource (XV, 379 p.)
Disciplina: 515/.53
Soggetto topico: Spherical harmonics
Electronic structure
Density functionals
Differential equations, Partial
Note generali: Bibliographic Level Mode of Issuance: Monograph
Nota di bibliografia: Includes bibliographical references and index.
Nota di contenuto: Introduction -- The Standard ASW Method -- Envelope Functions and Structure Constants -- The Plane-Wave Based Full-Potential ASW Method -- The Sperical-Wave Based Full-Potential ASW Method -- Details of the Standard ASW Method -- Details of the Envelope Functions -- Details of the Full-Potential ASW Methods -- Brillouin-Zone Integration -- Further Reading -- Index.
Sommario/riassunto: The Augmented Spherical Wave (ASW) method is one of the most powerful approaches to handle the requirements of finite basis sets in DFT calculations. It is particularly suited for the calculation of the electronic, magnetic, and optical properties of solid-state materials. Recent developments allow application, in addition, to the elastic properties and phonon spectra. Due to the localized nature of the ASW basis set these properties can be easily interpreted in terms of atomic-like orbitals.   The book addresses all those who want to learn about methods for electronic structure calculations and the ASW method in particular.   This new edition has been thoroughly revised and extended. In particular, a chapter on the new, both very efficient and accurate spherical-wave based full potential ASW method has been added.
Titolo autorizzato: The Augmented Spherical Wave Method  Visualizza cluster
ISBN: 3-642-25864-6
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910130584603321
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Serie: Lecture notes in physics ; ; 849.