English

Josephson radiation from gapless Andreev bound states in HgTe-based topological junctions

Mesoscale and Nanoscale Physics 2017-04-26 v2 Superconductivity

Abstract

Frequency analysis of the rf emission of oscillating Josephson supercurrent is a powerful passive way of probing properties of topological Josephson junctions. In particular, measurements of the Josephson emission enables to detect the expected presence of topological gapless Andreev bound states that give rise to emission at half the Josephson frequency fJf_J, rather than conventional emission at fJf_J. Here we report direct measurement of rf emission spectra on Josephson junctions made of HgTe-based gate-tunable topological weak links. The emission spectra exhibit a clear signal at half the Josephson frequency fJ/2f_{\rm J}/2. The linewidths of emission lines indicate a coherence time of 0.3\SI4ns0.3-\SI{4}{ns} for the fJ/2f_{\rm J}/2 line, much shorter than for the fJf_{\rm J} line (3\SI4ns3-\SI{4}{ns}). These observations strongly point towards the presence of topological gapless Andreev bound states, and pave the way for a future HgTe-based platform for topological quantum computation.

Keywords

Cite

@article{arxiv.1603.09611,
  title  = {Josephson radiation from gapless Andreev bound states in HgTe-based topological junctions},
  author = {Russell S. Deacon and Jonas Wiedenmann and Erwann Bocquillon and Fernando Domínguez and Teun M. Klapwijk and Philipp Leubner and Christoph Brüne and Ewelina M. Hankiewicz and Seigo Tarucha and Koji Ishibashi and Hartmut Buhmann and Laurens W. Molenkamp},
  journal= {arXiv preprint arXiv:1603.09611},
  year   = {2017}
}

Comments

Updated version, with additional modeling