English

Long-lived, radiation-suppressed superconducting quantum bit in a planar geometry

Superconductivity 2015-06-12 v1 Quantum Physics

Abstract

We present a superconducting qubit design that is fabricated in a 2D geometry over a superconducting ground plane to enhance the lifetime. The qubit is coupled to a microstrip resonator for readout. The circuit is fabricated on a silicon substrate using low loss, stoichiometric titanium nitride for capacitor pads and small, shadow-evaporated aluminum/aluminum-oxide junctions. We observe qubit relaxation and coherence times (T1T_1 and T2T_2) of 11.7 ±\pm 0.2 μ\mus and 8.7 ±\pm 0.3 μ\mus, respectively. Calculations show that the proximity of the superconducting plane suppresses the otherwise high radiation loss of the qubit. A significant increase in T1T_1 is projected for a reduced qubit-to-superconducting plane separation.

Keywords

Cite

@article{arxiv.1211.2017,
  title  = {Long-lived, radiation-suppressed superconducting quantum bit in a planar geometry},
  author = {Martin Sandberg and Michael R. Vissers and Tom Ohki and Jiansong Gao and Jose Aumentado and Martin Weides and David P. Pappas},
  journal= {arXiv preprint arXiv:1211.2017},
  year   = {2015}
}

Comments

3 pages, 3 figures

R2 v1 2026-06-21T22:35:16.840Z