English

Rhenium as a material platform for long-lived transmon qubits

Quantum Physics 2026-03-13 v1

Abstract

Dielectric loss at the interfaces of superconducting films has long been recognized as limiting the performance of state-of-the-art superconducting circuits. Notably, the presence of a native oxide layer on the film is hypothesized to contribute to dielectric loss at the metal-air interface. Here, we explore rhenium as a candidate for the film, motivated by its remarkable property to suppress native oxide formation. We demonstrate rhenium on sapphire as a promising material platform for superconducting circuits through the realization of transmons with mean relaxation times T1T_1 up to 407 microseconds at 5 GHz. Our transmons are supplemented with a loss characterization study, in which we separate the dominant loss mechanisms and construct a loss budget that agrees with our T1T_1 measurements. Further characterization may establish rhenium as a leading candidate for maximizing decoherence time.

Keywords

Cite

@article{arxiv.2603.11188,
  title  = {Rhenium as a material platform for long-lived transmon qubits},
  author = {Yanhao Wang and Suhas Ganjam and Ishan Narra and Luigi Frunzio and Robert J. Schoelkopf},
  journal= {arXiv preprint arXiv:2603.11188},
  year   = {2026}
}

Comments

18 pages, 8 figures

R2 v1 2026-07-01T11:15:22.485Z