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Planewaves, Pseudopotentials and the LAPW Method [recurso electrónico] / by David J. Singh, Lars Nordström.

Por: Colaborador(es): Tipo de material: TextoTextoEditor: Boston, MA : Springer US, 2006Edición: Second EditionDescripción: XIII, 134 p. online resourceTipo de contenido:
  • text
Tipo de medio:
  • computer
Tipo de soporte:
  • recurso en línea
ISBN:
  • 9780387296845
  • 99780387296845
Tema(s): Formatos físicos adicionales: Printed edition:: Sin títuloRecursos en línea:
Contenidos:
Density Functional Theory and Methods -- Planewave Pseudopotential Methods -- to the LAPW Method -- Nitty-Gritties -- Car-Parrinello and the LAPW Method.
En: Springer eBooksResumen: Planewaves, Pseudopotentials, and the LAPW Method, 2nd Edition, provides a comprehensive description of the LAPW (Linearized Augmented Plane Wave) method and its relationships with other first principles approaches for materials. The book is essential reading for practitioners of the method and for developers of electronic structure methods. This book is an updated and revised version of the previous volume. New material has been added on topics including the APW+LO method, LDA+U method, non-collinear magnetism and spin-orbit treatments. David J. Singh, is presently a distinguished research staff member and group leader for theory in the Condensed Matter Sciences Division of Oak Ridge National Laboratory. Lars Nordström is an associate professor in condensed matter theory in the Physics Department of Uppsala University, Sweden.
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Density Functional Theory and Methods -- Planewave Pseudopotential Methods -- to the LAPW Method -- Nitty-Gritties -- Car-Parrinello and the LAPW Method.

Planewaves, Pseudopotentials, and the LAPW Method, 2nd Edition, provides a comprehensive description of the LAPW (Linearized Augmented Plane Wave) method and its relationships with other first principles approaches for materials. The book is essential reading for practitioners of the method and for developers of electronic structure methods. This book is an updated and revised version of the previous volume. New material has been added on topics including the APW+LO method, LDA+U method, non-collinear magnetism and spin-orbit treatments. David J. Singh, is presently a distinguished research staff member and group leader for theory in the Condensed Matter Sciences Division of Oak Ridge National Laboratory. Lars Nordström is an associate professor in condensed matter theory in the Physics Department of Uppsala University, Sweden.

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