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QCD with two colors at finite baryon density at next-to-leading order

  • NBI
  • University of Illinois at Urbana-Champaign

Research output: Contribution to journalArticlepeer-review

80 Scopus citations

Abstract

We study QCD with two colors and quarks in the fundamental representation at finite baryon density in the limit of light-quark masses. In this limit the free energy of this theory reduces to the free energy of a chiral Lagrangian which is based on the symmetries of the microscopic theory. In earlier work this Lagrangian was analyzed at the mean-field level and a phase transition to a phase of condensed diquarks was found at a chemical potential of half the diquark mass (which is equal to the pion mass). In this article we analyze this theory at next-to-leading order in chiral perturbation theory. We show that the theory is renormalizable and calculate the next-to-leading order free energy in both phases of the theory. By deriving a Landau-Ginzburg theory for the order parameter we show that the finite one-loop contribution and the next-to-leading order terms in the chiral Lagrangian do not qualitatively change the phase transition. In particular, the critical chemical potential is equal to half the next-to-leading order pion mass, and the phase transition is of second order.

Original languageEnglish
Pages (from-to)290-314
Number of pages25
JournalNuclear Physics, Section B
Volume620
Issue number1-2
DOIs
StatePublished - Jan 2002

Keywords

  • Adjoint QCD
  • Chiral perturbation theory
  • Finite baryon density
  • Lattice QCD
  • Low-energy effective theory
  • QCD Dirac operator
  • QCD partition function
  • QCD with two colors

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