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The factorization method for systems with a complex action. A test in random matrix theory for finite density QCD

  • University of Copenhagen
  • University of Crete
  • Nagoya University

Research output: Contribution to journalArticlepeer-review

75 Scopus citations

Abstract

Monte Carlo simulations of systems with a complex action are known to be extremely difficult. A new approach to this problem based on a factorization property of distribution functions of observables has been proposed recently. The method can be applied to any system with a complex action, and it eliminates the so-called overlap problem completely. We test the new approach in a Random Matrix Theory for finite density QCD, where we are able to reproduce the exact results for the quark number density. The achieved system size is large enough to extract the thermodynamic limit. Our results provide a clear understanding of how the expected first order phase transition is induced by the imaginary part of the action.

Original languageEnglish
Article number062
JournalJournal of High Energy Physics
Volume6
Issue number10
DOIs
StatePublished - Oct 1 2002

Keywords

  • Lattice Gauge Field Theories
  • Lattice QCD
  • Lattice Quantum Field Theory

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