English

Joule overheating poisons the fractional ac Josephson effect in topological Josephson junctions

Mesoscale and Nanoscale Physics 2019-01-16 v3 Superconductivity

Abstract

Topological Josephson junctions designed on the surface of a 3D-topological insulator (TI) harbor Majorana bound states (MBS's) among a continuum of conventional Andreev bound states. The distinct feature of these MBS's lies in the 4π4\pi-periodicity of their energy-phase relation that yields a fractional ac Josephson effect and a suppression of odd Shapiro steps under r ⁣fr\!f irradiation. Yet, recent experiments showed that a few, or only the first, odd Shapiro steps are missing, casting doubts on the interpretation. Here, we show that Josephson junctions tailored on the large bandgap 3D TI Bi2_2Se3_3 exhibit a fractional ac Josephson effect acting on the first Shapiro step only. With a modified resistively shunted junction model, we demonstrate that the resilience of higher order odd Shapiro steps can be accounted for by thermal poisoning driven by Joule overheating. Furthermore, we uncover a residual supercurrent at the nodes between Shapiro lobes, which provides a direct and novel signature of the current carried by the MBS. Our findings showcase the crucial role of thermal effects in topological Josephson junctions and lend support to the Majorana origin of the partial suppression of odd Shapiro steps.

Keywords

Cite

@article{arxiv.1803.07674,
  title  = {Joule overheating poisons the fractional ac Josephson effect in topological Josephson junctions},
  author = {K. Le Calvez and L. Veyrat and F. Gay and P. Plaindoux and C. Winkelmann and H. Courtois and B. Sacépé},
  journal= {arXiv preprint arXiv:1803.07674},
  year   = {2019}
}

Comments

Revised article and Supplemental material