English

Aluminum air bridges for superconducting quantum devices realized using a single step electron-beam lithography process

Quantum Physics 2022-09-01 v2

Abstract

In superconducting quantum devices, air bridges enable increased circuit complexity and density as well as mitigate the risk of microwave loss arising from mode mixing. We implement aluminum air bridges using a simple process based on single-step electron-beam gradient exposure. The resulting bridges have sizes ranging from 20 μm20~\mu m to 100 μm100~\mu m, with a yield exceeding 99 %99~\% for lengths up to 36 μm36~\mu m. When used to connect ground planes in coplanar waveguide resonators, the induced loss contributed to the system is negligible, corresponding to a reduction of the quality factor exceeding 1.0×1081.0\times10^8 per bridge. The bridge process is compatible with Josephson junctions and allows for the simultaneous creation of low loss bandages between superconducting layers.

Keywords

Cite

@article{arxiv.2206.09489,
  title  = {Aluminum air bridges for superconducting quantum devices realized using a single step electron-beam lithography process},
  author = {Noah Janzen and Michal Kononenko and Shaun Ren and Adrian Lupascu},
  journal= {arXiv preprint arXiv:2206.09489},
  year   = {2022}
}

Comments

5 pages, 4 figures

R2 v1 2026-06-24T11:56:41.382Z