
As an Amazon Associate and affiliate partner, Menrva Books earns from qualifying purchases. Learn more
This book gathers the lecture notes of courses given at the 2010 summer school in theoretical physics in Les Houches, France, Session XCIV. Written in a pedagogical style, this volume illustrates how the field of quantum gases has flourished at the interface between atomic physics and quantum optics, condensed matter physics, nuclear and high-energy physics, non-linear physics and quantum information.The physics of correlated atoms in optical lattices is covered from both theoretical and experimental perspectives, including the Bose and Fermi Hubbard models, and the description of the Mott transition. Few-body physics with cold atoms has made spectacular progress and exact solutions for 3-body and 4-body problems have been obtained. The remarkable collisional stability of weakly bound molecules is at the core of the studies of molecular BEC regimes in Fermi gases. Entanglement in quantum many-body systems is introduced and is a key issue for quantum information processing. Rapidly rotating quantum gases and optically induced gauge fields establish a remarkable connection with the fractional quantum Hall effect for electrons in semiconductors. Dipolar quantum gases with long range and anisotropic interaction lead to new quantum degenerate regimes in atoms with large magnetic moments, or electrically aligned polar molecules. Experiments with ultracold fermions show how quantum gases serve as ''quantum simulators'' of complex condensed matter systems through measurements of the equation of state. Similarly, the recent observation of Anderson localization of matter waves in a disordered optical potential makes a fruitful link with the behaviour of electrons in disordered systems.
This volume investigates the complex behaviors of ultracold quantum gases and their utility as simulators for broader phenomena in condensed matter and high-energy physics. The editors, Christophe Salomon, Georgy V. Shlyapnikov, and Leticia F. Cugliandolo, compile pedagogical lecture notes from the 2010 Les Houches Summer School to bridge the gap between atomic physics, quantum optics, and many-body theory. The text provides a rigorous framework for understanding correlated atoms, molecular Bose-Einstein condensates, and the emergence of quantum degenerate regimes in dipolar gases.
What You Will Find
Experts recognize this collection as a foundational resource for graduate students and researchers entering the field of ultracold atomic physics. Readers frequently note the high level of technical density, which serves as a comprehensive reference for the state of the field as of 2010.
Page Count:
384
Publication Date:
2013-01-06
Publisher:
Oxford University Press
ISBN-10:
019966188X
ISBN-13:
9780199661886