English

Gate-Tunable Transmon Using Selective-Area-Grown Superconductor-Semiconductor Hybrid Structures on Silicon

Mesoscale and Nanoscale Physics 2022-09-21 v1

Abstract

We present a gate-voltage tunable transmon qubit (gatemon) based on planar InAs nanowires that are selectively grown on a high resistivity silicon substrate using III-V buffer layers. We show that low loss superconducting resonators with an internal quality of 2×1052\times 10^5 can readily be realized using these substrates after the removal of buffer layers. We demonstrate coherent control and readout of a gatemon device with a relaxation time, T1700nsT_{1}\approx 700\,\mathrm{ns}, and dephasing times, T220nsT_2^{\ast}\approx 20\,\mathrm{ns} and T2,echo1.3μsT_{\mathrm{2,echo}} \approx 1.3\,\mathrm{\mu s}. Further, we infer a high junction transparency of 0.40.90.4 - 0.9 from an analysis of the qubit anharmonicity.

Keywords

Cite

@article{arxiv.2202.10860,
  title  = {Gate-Tunable Transmon Using Selective-Area-Grown Superconductor-Semiconductor Hybrid Structures on Silicon},
  author = {A. Hertel and M. Eichinger and L. O. Andersen and D. M. T. van Zanten and S. Kallatt and P. Scarlino and A. Kringhøj and J. M. Chavez-Garcia and G. C. Gardner and S. Gronin and M. J. Manfra and A. Gyenis and M. Kjaergaard and C. M. Marcus and K. D. Petersson},
  journal= {arXiv preprint arXiv:2202.10860},
  year   = {2022}
}
R2 v1 2026-06-24T09:49:36.276Z