Quantum Hall Effects: Recent Theoretical And Experimental Developments (3rd Edition)

Regular price €127.99
A01=Zyun Francis Ezawa
Anyons
Author_Zyun Francis Ezawa
Category=PHK
Composite Bosons
Composite Fermions
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eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
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eq_science
Field Theory
Noncommutative Geometry
Quantum Coherence
Quantum Hall Effects
Quantum Hall Ferromagnets
Topological Solitons

Product details

  • ISBN 9789814360753
  • Publication Date: 06 May 2013
  • Publisher: World Scientific Publishing Co Pte Ltd
  • Publication City/Country: SG
  • Product Form: Hardback
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Enthusiasm for research on the quantum Hall effect (QHE) is unbounded. The QHE is one of the most fascinating and beautiful phenomena in all branches of physics. Tremendous theoretical and experimental developments are still being made in this sphere. Composite bosons, composite fermions and anyons were among distinguishing ideas in the original edition.In the 2nd edition, fantastic phenomena associated with the interlayer phase coherence in the bilayer system were extensively described. The microscopic theory of the QHE was formulated based on the noncommutative geometry. Furthermore, the unconventional QHE in graphene was reviewed, where the electron dynamics can be treated as relativistic Dirac fermions and even the supersymmetric quantum mechanics plays a key role.In this 3rd edition, all chapters are carefully reexamined and updated. A highlight is the new chapter on topological insulators. Indeed, the concept of topological insulator stems from the QHE. Other new topics are recent prominent experimental discoveries in the QHE, provided by the experimentalists themselves in Part V. This new edition presents an instructive and comprehensive overview of the QHE. It is also suitable for an introduction to quantum field theory with vividly described applications. Only knowledge of quantum mechanics is assumed. This book is ideal for students and researchers in condensed matter physics, particle physics, theoretical physics and mathematical physics.