English

Low-Loss, High-Coherence Airbridge Interconnects Fabricated by Single-Step Lithography

Quantum Physics 2026-01-26 v1

Abstract

Airbridges are essential for creating high-performance, low-parasitic interconnects in integrated circuits and quantum devices. Conventional multi-step fabrication methods hinder miniaturization and introduce process-related defects. We report a simplified process for fabricating nanoscale airbridges using only a single electron-beam lithography step. By optimizing a multilayer resist stack with a triple-exposure-dose scheme and a thermal reflow step, we achieve smooth, suspended metallic bridges with sub-200-nm features that exhibit robust mechanical stability. Fabricated within a gradiometric SQUID design for superconducting transmon qubits, these airbridges introduce no measurable additional loss in the relaxation time T1T_1, while enabling a 2.5-fold enhancement of the dephasing time T2T_2^*. This efficient method offers a practical route toward integrating high-performance three-dimensional interconnects in advanced quantum and nano-electronic devices.

Keywords

Cite

@article{arxiv.2601.16416,
  title  = {Low-Loss, High-Coherence Airbridge Interconnects Fabricated by Single-Step Lithography},
  author = {Jibang Fu and Bo Ren and Jiandong Ouyang and Cong Li and Kechengqi Zhu and Yonggang Che and Xiang Fu and Shichuan Xue and Zhaohua Yang and Mingtang Deng and Junjie Wu},
  journal= {arXiv preprint arXiv:2601.16416},
  year   = {2026}
}