Analytical coexistence of s, p, s + p phases of a holographic superconductor
Abstract
We analytically study the critical phase of a mixed system of the U(2) gauge fields and global symmetry on the boundary using gauge/gravity. A variational minimization problem has been formulated. The numerical results pertinently show that there exists a minimum chemical potential in which both scalar (s-wave) and vector (p-wave) condensates exist in a mixture, as well as in the distinct s- and p-phases. This result is obtained by breaking the symmetry into U(1) symmetry and rotational symmetry. While the analytical solutions of condensates and charge densities are achieved in both cases: the balanced and unbalanced holographic superconductors. This is the first an- alytical study of the coexistence of two modes of the superconductivity with different order parameters. The realistic model consists of two different phases of the superfluidity in Helium.
- Publication:
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arXiv e-prints
- Pub Date:
- October 2013
- DOI:
- 10.48550/arXiv.1310.1735
- arXiv:
- arXiv:1310.1735
- Bibcode:
- 2013arXiv1310.1735M
- Keywords:
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- High Energy Physics - Theory
- E-Print:
- version accepted in "International Journal of Geometric Methods in Modern Physics"