English

Cooper pairing and finite-size effects in a NJL-type four-fermion model

High Energy Physics - Phenomenology 2014-11-21 v2

Abstract

Starting from a NJL-type model with N fermion species fermion and difermion condensates and their associated phase structures are considered at nonzero chemical potential μ\mu and zero temperature in spaces with nontrivial topology of the form S1S1S1S^1\otimes S^1\otimes S^1 and R2S1R^2\otimes S^1. Special attention is devoted to the generation of the superconducting phase. In particular, for the cases of antiperiodic and periodic boundary conditions we have found that the critical curve of the phase transitions between the chiral symmetry breaking and superconducting phases as well as the corresponding condensates and particle densities strongly oscillate vs λ1/L\lambda\sim 1/L, where LL is the length of the circumference S1S^1. Moreover, it is shown that at some finite values of LL the superconducting phase transition is shifted to smaller values both of μ\mu and particle density in comparison with the case of L=L=\infty.

Keywords

Cite

@article{arxiv.1005.0699,
  title  = {Cooper pairing and finite-size effects in a NJL-type four-fermion model},
  author = {D. Ebert and K. G. Klimenko},
  journal= {arXiv preprint arXiv:1005.0699},
  year   = {2014}
}

Comments

13 pages, 13 figures; minor changes; new references added; version accepted to PRD