Ultracold atoms in optical lattices : simulating quantum many-body systems /
Simulating quantum many-body systems
Maciej Lewenstein, Anna Sanpera and Veṛnica Ahufiniger.
- 1st ed.
- Oxford, U.K. : Oxford University Press, 2012.
- xiv, 479 p. : ill. ; 26 cm.
Includes bibliographical references (p. [439]-470) and index.
1. Introduction -- 2. Statistical physics of condensed matter: basic concepts -- 3. Ultracold gases in optical lattices: basic concepts -- 4. Quantum simulators of condensed matter -- 5. Bose-Hubbard models: methods of treatment -- 6. Fermi and Fermi-Bose Hubbard models: methods of treatment -- 7. Ultracold spinor atomic gases -- 8. Ultracold dipolar gases -- 9. Disordered ultracold atomic gases -- 10. Frustrated ultracold atom systems -- 11. Ultracold atomic gases in 'artificial' gauge fields -- 12. Many-body physics from a quantum information perspective -- 13. Quantum information with lattice gases -- 14. Detection of quantum systems realized with ultracold atoms -- 15. Perspectives: beyond standard optical lattices.