Lectures on the Physics of Strongly Correlated Systems XIV | Fourteenth Training Course in the Physics of Strongly Correlated Systems | ISBN 9780735408517

Lectures on the Physics of Strongly Correlated Systems XIV

Fourteenth Training Course in the Physics of Strongly Correlated Systems

herausgegeben von Adolfo Avella und Ferdinando Mancini
Mitwirkende
Herausgegeben vonAdolfo Avella
Herausgegeben vonFerdinando Mancini
Buchcover Lectures on the Physics of Strongly Correlated Systems XIV  | EAN 9780735408517 | ISBN 0-7354-0851-3 | ISBN 978-0-7354-0851-7
Research

Lectures on the Physics of Strongly Correlated Systems XIV

Fourteenth Training Course in the Physics of Strongly Correlated Systems

herausgegeben von Adolfo Avella und Ferdinando Mancini
Mitwirkende
Herausgegeben vonAdolfo Avella
Herausgegeben vonFerdinando Mancini
The volume contains the lectures delivered at the XIV Training Course in the Physics of Strongly Correlated Systems, held in Vietri sul Mare (Salerno) Italy, in October 2009. The project of the meeting was to promote the formation of young scientists by means of training through research. These features are reflected in the book: the lectures are up-to-date monographs of relevant subjects in the field of Condensed Matter Physics. Contributions include: Electronic Structure of Strongly Correlated Materials (Electronic structure calculations in one-electron approximation; Hubbard model in Dynamical Mean-Field Theory (DMFT); Electronic structure calculations for real materials by LDA+DMFT method); Computational Studies of Quantum Spin Systems (Quantum spin models, their ground states and quantum phase transitions; Classical phase transitions, Monte Carlo simulations, and finite-size scaling; Exact diagonalization methods; Quantum Monte Carlo simulations and the Stochastic Series Expansion method; Survey of related computational methods); Dynamical Mean-Field Theory of Electronic Correlations in Models and Materials (Mean-field theories for many-body systems; Lattice fermions in the limit of high dimensions; Dynamical mean-field theory for correlated lattice fermions; The Mott-Hubbard Metal-Insulator Transition; Electronic correlations and disorder; Theory of electronic correlations in materials; Kinks in the dispersion of strongly correlated electron systems).