中文

How the quark self-energy affects the color-superconducting gap

核理论 2009-11-07 v1 高能物理 - 唯象学

摘要

We consider color superconductivity with two flavors of massless quarks which form Cooper pairs with total spin zero. We solve the gap equation for the color-superconducting gap parameter to subleading order in the QCD coupling constant gg at zero temperature. At this order in gg, there is also a previously neglected contribution from the real part of the quark self-energy to the gap equation. Including this contribution leads to a reduction of the color-superconducting gap parameter \f0\f_0 by a factor b0=exp[(\p2+4)/8]0.177b_0'=\exp \big[ -(\p ^2+4)/8 \big]\simeq 0.177. On the other hand, the BCS relation Tc0.57\f0T_c\simeq 0.57\f_0 between \f0\f_0 and the transition temperature TcT_c is shown to remain valid after taking into account corrections from the quark self-energy. The resulting value for TcT_c confirms a result obtained previously with a different method.

引用

@article{arxiv.nucl-th/0110016,
  title  = {How the quark self-energy affects the color-superconducting gap},
  author = {Qun Wang and Dirk H. Rischke},
  journal= {arXiv preprint arXiv:nucl-th/0110016},
  year   = {2009}
}

备注

Revtex, 8 pages, no figure