English

Josephson supercurrent through the topological surface states of strained bulk HgTe

Mesoscale and Nanoscale Physics 2013-06-04 v1

Abstract

Strained bulk HgTe is a three-dimensional topological insulator, whose surface electrons have a high mobility (30,000 cm^2/Vs), while its bulk is effectively free of mobile charge carriers. These properties enable a study of transport through its unconventional surface states without being hindered by a parallel bulk conductance. Here, we show transport experiments on HgTe-based Josephson junctions to investigate the appearance of the predicted Majorana states at the interface between a topological insulator and a superconductor. Interestingly, we observe a dissipationless supercurrent flow through the topological surface states of HgTe. The current-voltage characteristics are hysteretic at temperatures below 1 K with critical supercurrents of several microamperes. Moreover, we observe a magnetic field induced Fraunhofer pattern of the critical supercurrent, indicating a dominant 2\pi-periodic Josephson effect in the unconventional surface states. Our results show that strained bulk HgTe is a promising material system to get a better understanding of the Josephson effect in topological surface states, and to search for the manifestation of zero-energy Majorana states in transport experiments.

Keywords

Cite

@article{arxiv.1306.0154,
  title  = {Josephson supercurrent through the topological surface states of strained bulk HgTe},
  author = {Jeroen B. Oostinga and Luis Maier and Peter Schueffelgen and Daniel Knott and Christopher Ames and Christoph Bruene and Grigory Tkachov and Hartmut Buhmann and Laurens W. Molenkamp},
  journal= {arXiv preprint arXiv:1306.0154},
  year   = {2013}
}

Comments

experimental paper; 19 pages, 4 figures