Quantum Field Theory of Many-Body Systems
From the Origin of Sound to an Origin of Light and Electrons
Format:Hardback
Publisher:Oxford University Press
Published:3rd Jun '04
Currently unavailable, and unfortunately no date known when it will be back
This hardback is available in another edition too:
- Paperback£38.99(9780199227259)
For most of the last century, condensed matter physics has been dominated by band theory and Landau's symmetry breaking theory. In the last twenty years, however, there has been the emergence of a new paradigm associated with fractionalisation, topological order, emergent gauge bosons and fermions, and string condensation. These new physical concepts are so fundamental that they may even influence our understanding of the origin of light and fermions in the universe. This book is a pedagogical and systematic introduction to the new concepts and quantum field theoretical methods (which have fuelled the rapid developments) in condensed matter physics. It discusses many basic notions in theoretical physics which underlie physical phenomena in nature. Topics covered are dissipative quantum systems, boson condensation, symmetry breaking and gapless excitations, phase transitions, Fermi liquids, spin density wave states, Fermi and fractional statistics, quantum Hall effects, topological and quantum order, spin liquids, and string condensation. Methods covered are the path integral, Green's functions, mean-field theory, effective theory, renormalization group, bosonization in one- and higher dimensions, non-linear sigma-model, quantum gauge theory, dualities, slave-boson theory, and exactly soluble models beyond one-dimension. This book is aimed at teaching graduate students and bringing them to the frontiers of research in condensed matter physics.
As a whole, Quantum Field Theory of Many-Body Systems is an inspirational and forward-looking book exploring the mysteries and neverending wonders of many-particle quantum mechanics...Wen's book offers a refreshing new look at the mysterious quantum world. * Physics Today, November 2005. *
ISBN: 9780198530947
Dimensions: 247mm x 173mm x 32mm
Weight: 1120g
520 pages