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Phase Transition in Strongly Correlated Systems: Bilayer Quantum Hall Effect, Inhomogeneous Superconductivity and Boson Hubbard Model - Couverture souple

Jiang, Longhua

 
9783639157949: Phase Transition in Strongly Correlated Systems: Bilayer Quantum Hall Effect, Inhomogeneous Superconductivity and Boson Hubbard Model

Synopsis

Landau Fermi Liquid Theory is the basis of our current understanding of the physical properties of electronic systems. It relies on a deep and far- reaching principle of adiabatic continuity. The success of the theory depends crucially on density and dimensionality of the systems. Recent development in semiconductors and ultra-cold atom physics let physicists realize that there are more interesting theories than dull Landau Fermi liquid theory, most of which lie at the heart of strongly correlated systems, either bosons or fermions. This book is an effort to explain strongly correlated phenomena in bilayer quantum Hall systems, unconventional superconductivity and the boson Hubbard model. This book is intended for researchers in condensed matter field, but is also useful to someone who wants to know the recent development of the exciting field.

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Présentation de l'éditeur

Landau Fermi Liquid Theory is the basis of our current understanding of the physical properties of electronic systems. It relies on a deep and far- reaching principle of adiabatic continuity. The success of the theory depends crucially on density and dimensionality of the systems. Recent development in semiconductors and ultra-cold atom physics let physicists realize that there are more interesting theories than dull Landau Fermi liquid theory, most of which lie at the heart of strongly correlated systems, either bosons or fermions. This book is an effort to explain strongly correlated phenomena in bilayer quantum Hall systems, unconventional superconductivity and the boson Hubbard model. This book is intended for researchers in condensed matter field, but is also useful to someone who wants to know the recent development of the exciting field.

Biographie de l'auteur

Dr. Longhua Jiang is an assistant professor in Miami University. He received his Ph.D. in physics and Ph.D. minor in operational research from Pennsylvania State University. His research interests include condensed matter physics, atomic physics and numerical simulations of complex systems. He is a member of American Physics Society.

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