English

Effective model for a short Josephson junction with a phase discontinuity

Superconductivity 2016-05-25 v1

Abstract

We consider a short Josephson junction with a phase discontinuity κ\kappa created, e.g., by a pair of tiny current injectors, at some point x0x_0 along the length of the junction. We derive the effective current-phase relation (CPR) for the system as a whole, i.e., reduce it to an effective point-like junction. From the effective CPR we obtain the ground state of the system and predict the dependence of its critical current on κ\kappa. We show that in a large range of κ\kappa values the effective junction behaves as a φ0\varphi_0 Josephson junction, i.e., has a unique ground state phase φ0\varphi_0 within each 2π2\pi interval. For κπ\kappa\approx\pi and x0x_0 near the middle of the junction one obtains a φ0±φ\varphi_0\pm\varphi junction, i.e., the Josephson junction with degenerate ground state phase φ0±φ\varphi_0\pm\varphi within each 2π2\pi interval. Further, in view of possible escape experiments especially in the quantum domain, we investigate the scaling of the energy barrier and eigenfrequency close to the critical currents and predict the behavior of the escape histogram width σ(κ)\sigma(\kappa) in the regime of the macroscopic quantum tunneling.

Keywords

Cite

@article{arxiv.1508.04317,
  title  = {Effective model for a short Josephson junction with a phase discontinuity},
  author = {E. Goldobin and S. Mironov and A. Buzdin and R. G. Mints and D. Koelle and R. Kleiner},
  journal= {arXiv preprint arXiv:1508.04317},
  year   = {2016}
}
R2 v1 2026-06-22T10:36:03.307Z