Directional dependence of a color superconducting gap in two-flavor QCD in a magnetic field

Lang Yu and Igor A. Shovkovy
Phys. Rev. D 85, 085022 – Published 19 April 2012

Abstract

We study the effect of a magnetic field on the pairing dynamics in two-flavor color superconducting dense quark matter. The study is performed in the weakly coupled regime of QCD at asymptotically high density, using the framework of the Schwinger-Dyson equation in the improved rainbow approximation. We show that the superconducting gap function develops a directional dependence in momentum space. Quasiparticles with momenta perpendicular to the direction of the magnetic field have the largest gaps, while quasiparticles with momenta parallel to the field have the smallest gaps. We argue that the directional dependence is a consequence of a long-range interaction in QCD. The quantitative measure of the ellipticity of the gap function is determined by a dimensionless ratio, proportional to the square of the magnetic field and inversely proportional to the fourth power of the quark chemical potential. For magnetic fields in stars, B1018G, the corresponding ratio is estimated to be less than about 102, justifying the use of the weak magnetic field limit in all stellar applications.

  • Received 7 February 2012

DOI:https://doi.org/10.1103/PhysRevD.85.085022

© 2012 American Physical Society

Authors & Affiliations

Lang Yu*

  • Department of Physics, Arizona State University, Tempe, Arizona 85287, USA

Igor A. Shovkovy

  • Department of Applied Sciences and Mathematics, Arizona State University, Mesa, Arizona 85212, USA

  • *langyu@asu.edu
  • igor.shovkovy@asu.edu

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Issue

Vol. 85, Iss. 8 — 15 April 2012

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