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Computational condensed matter physics : progress and prospects
Author
Source
Issue
Vol. 2, Issue 3 (31 Dec. 2009), pp.131-155, 25 p.
Publisher
Yarmouk University Deanship of Research and Graduate Studies
Publication Date
2009-12-31
Country of Publication
Jordan
No. of Pages
25
Main Subjects
Topics
Abstract EN
Computational condensed matter physics is nowadays a highly developed field of research, in terms of basic theory, algorithms and applications.
Providing a comprehensive account of this subject is hence far beyond the scope of any review article.
Therefore, I will introduce this subject through a set of examples taken from my recent research work, which touch upon some important developments in this field.
These developments are the exact exchange formalism within Kohn-Sham density functional theory, combined exact exchange and many-body quasiparticle approach (for highly accurate band structure calculations), and maximally localized Wannier functions.
The theoretical background of the above approaches in addition to the density functional perturbation theory (used to calculate the phonon spectra and other related physical properties of solids) will be briefly described, and representative results are shown to demonstrate the accuracy and predictive power of these theoretical approaches.
American Psychological Association (APA)
Qteish, Abd Allah. 2009. Computational condensed matter physics : progress and prospects. Jordan Journal of Physics،Vol. 2, no. 3, pp.131-155.
https://search.emarefa.net/detail/BIM-266262
Modern Language Association (MLA)
Qteish, Abd Allah. Computational condensed matter physics : progress and prospects. Jordan Journal of Physics Vol. 2, no. 3 (2009), pp.131-155.
https://search.emarefa.net/detail/BIM-266262
American Medical Association (AMA)
Qteish, Abd Allah. Computational condensed matter physics : progress and prospects. Jordan Journal of Physics. 2009. Vol. 2, no. 3, pp.131-155.
https://search.emarefa.net/detail/BIM-266262
Data Type
Journal Articles
Language
English
Notes
Includes bibliographical references : p. 152-155
Record ID
BIM-266262