English

Electrodynamics of dual superconducting chiral medium

High Energy Physics - Phenomenology 2017-12-12 v2 Superconductivity Nuclear Theory

Abstract

We study the electrodynamics of a chiral medium with electric and magnetic charges using the effective Maxwell-Chern-Simons theory extended to include the magnetic current. The exchange of helicity between the chiral medium and the magnetic field, known as the inverse cascade, is controlled by the chiral anomaly equation. In the presence of the magnetic current, the magnetic helicity is dissipated, so that the inverse cascade stops when the magnetic helicity vanishes while the chiral conductivity reaches a non-vanishing stationary value satisfying σχ2<4σeσm\sigma_\chi^2< 4\sigma_e\sigma_m, where σe\sigma_e, σm\sigma_m and σχ\sigma_\chi are the electric, magnetic and chiral conductivities respectively. We argue that this state is superconducting and exhibits the Meissner effect for both electric and magnetic fields. Moreover, this state is stable with respect to small magnetic helicity fluctuations; the magnetic helicity becomes unstable only when the inequality mentioned above is violated.

Keywords

Cite

@article{arxiv.1708.08536,
  title  = {Electrodynamics of dual superconducting chiral medium},
  author = {Yang Li and Kirill Tuchin},
  journal= {arXiv preprint arXiv:1708.08536},
  year   = {2017}
}

Comments

13 pages, 11 figures. To appear in Phys. Lett. B