English

Decay-protected superconducting qubit with fast control enabled by integrated on-chip filters

Quantum Physics 2024-07-17 v2

Abstract

Achieving fast gates and long coherence times for superconducting qubits presents challenges, typically requiring either a stronger coupling of the drive line or an excessively strong microwave signal to the qubit. To address this, we introduce on-chip filters of the qubit drive exhibiting a stopband at the qubit frequency, thus enabling long coherence times and strong coupling at the subharmonic frequency, facilitating fast single-qubit gates, and reduced thermal load. The filters exhibit an extrinsic relaxation time of a few seconds while enabling sub-10-ns gates with subharmonic control. Here we show up to 200-fold improvement in the measured relaxation time at the stopband. Furthermore, we implement subharmonic driving of Rabi oscillations with a π\pi pulse duration of 12 ns. Our demonstration of on-chip filters and efficient subharmonic driving in a two-dimensional quantum processor paves the way for a scalable qubit architecture with reduced thermal load and noise from the control line.

Keywords

Cite

@article{arxiv.2402.08906,
  title  = {Decay-protected superconducting qubit with fast control enabled by integrated on-chip filters},
  author = {Aashish Sah and Suman Kundu and Heikki Suominen and Qiming Chen and Mikko Möttönen},
  journal= {arXiv preprint arXiv:2402.08906},
  year   = {2024}
}

Comments

Main document (15 pages, 5 figures), Supplementary material (10 pages, 7 figures, 1 table)

R2 v1 2026-06-28T14:48:02.321Z