English

Can slow recombination in ordered superconductors explain the excess quasiparticle population?

Superconductivity 2025-07-08 v1 Quantum Physics

Abstract

An excess density of quasiparticles is widely observed in superconducting films. This excess causes performance degradation in a variety of superconducting devices, including decoherence in qubits. In this Letter, we evaluate the hypothesis of [1] that the quasiparticle excess is caused by anomalously slow recombination at low quasiparticle densities due to localization in sub-gap states. We probe the density of states in aluminum and niobium films using current-voltage measurements of tunnel junctions and extract upper bounds on the energy scales of the sub-gap states and gap smearing. With these parameters, we evaluate the recombination times predicted by [1] and find that slow recombination is not predicted to occur at observed quasiparticle densities in aluminumand niobium-based superconducting devices. These results suggest that the quasiparticle excess in ordered superconductors is primarily due to non-thermal sources of quasiparticle generation and not slow recombination.

Keywords

Cite

@article{arxiv.2507.03217,
  title  = {Can slow recombination in ordered superconductors explain the excess quasiparticle population?},
  author = {Eva Gurra and Douglas A. Bennett and Shannon M. Duff and Michael R. Vissers and Joel N. Ullom},
  journal= {arXiv preprint arXiv:2507.03217},
  year   = {2025}
}
R2 v1 2026-07-01T03:46:05.455Z