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Self-Consistent Quantum-Field Theory and Bosonization for Strongly Correlated Electron Systems

Self-Consistent Quantum-Field Theory and Bosonization for Strongly Correlated Electron Systems - Paperback

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Product Details
Author:
Rudolf Haussmann
Publisher:
Springer
Publication Date:
Oct 09, 2011
Number of pages:
175 pages
Binding:
Paperback or Softback
ISBN-10:
3642085091
ISBN-13:
9783642085093

Overview

In interaction the between the leads to a quantum liquids particles variety of and unusual states of condensed matter interesting systems, super e.g. and the fractional in electron Hall effect conductivity quantum (FQHE) sys tems. In this book for we investigate quantum field theoretical approaches fermion the is interacting systems. Originally, quantum fieldtheory designed describe as a to perturbation theory weakly interacting many particle sys tems. For treatment of interaction and correlation effects a proper beyond the the series of must beresummed perturbation theory, Feynmandiagrams severalresummationschemeswhich the We on partially. present depend par ticular effect considered.We start with ofthe a physical compactdescription self consistent and the quantum fieldtheory approximations. conserving the of in fermion is caused two Superconductivity systems by interplay formation ofbound attractive interaction between the phenomena: pairsby fermions condensation ofthe low to and at temperatures leading long pairs order and We consider three dimensional of a range superfluidity. system fermionswith attractiveinteractionwhichshowsacrossoverfrom short range BCS to Bose Einstein condensation ofbound ifthe superconductivity pairs interaction is tuned fromweak to While the self coupling. strength strong consistent version ofthe is well suited to describe con quantum field theory densation of and a second resummation to the pairs superfluidity, leading the ofbound Bethe Salpeter equation describes formation pairs.


  • | Author: Rudolf Haussmann
  • | Publisher: Springer
  • | Publication Date: Oct 09, 2011
  • | Number of Pages: 175 pages
  • | Binding: Paperback or Softback
  • | ISBN-10: 3642085091
  • | ISBN-13: 9783642085093

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