English

\varphi-State and Inverted Fraunhofer Pattern in Nonaligned Josephson Junctions

Superconductivity 2013-02-18 v2

Abstract

A generic nonaligned Josephson junction in the presence of an external magnetic field is theoretically considered and an unusual flux-dependent current-phase relation (CPR) is revealed. We explain the origin of the anomalous CPR via the current density flow induced by the external field within a two-dimensional quasiclassical Keldysh-Usadel framework. In particular, it is demonstrated that nonaligned Josephson junctions can be utilized to obtain a ground-state other than 0 and \pi, corresponding to a so-called \varphi-junction, which is tunable via the external magnetic flux. Furthermore, we show that the standard Fraunhofer central peak of the critical supercurrent may be inverted into a local minimum solely due to geometrical factors in planar junctions. This yields good consistency with a recent experimental measurement displaying such type of puzzling feature [R. S. Keizer et al, Nature 439, 825 (2006)].

Keywords

Cite

@article{arxiv.1208.6008,
  title  = {\varphi-State and Inverted Fraunhofer Pattern in Nonaligned Josephson Junctions},
  author = {Mohammad Alidoust and Jacob Linder},
  journal= {arXiv preprint arXiv:1208.6008},
  year   = {2013}
}

Comments

5 pages, 4 figures. To Appear in Physical Review B: Rapid Communications

R2 v1 2026-06-21T21:57:00.773Z