Tunneling study of cavity grade Nb: possible magnetic scattering at the surface
arXiv:0803.2852 · doi:10.1063/1.2913764
Abstract
Tunneling spectroscopy was performed on Nb pieces prepared by the same processes used to etch and clean superconducting radio frequency (SRF) cavities. Air exposed, electropolished Nb exhibited a surface superconducting gap delta=1.55 meV, characteristic of clean, bulk Nb. However the tunneling density of states (DOS) was broadened significantly. The Nb pieces treated with the same mild baking used to improve the Q-slope in SRF cavities, reveal a sharper DOS. Good fits to the DOS were obtained using Shiba theory, suggesting that magnetic scattering of quasiparticles is the origin of the gapless surface superconductivity and a heretofore unrecognized contributor to the Q-slope problem of Nb SRF cavities.
3 pages, 3 figures
Cited by in corpus (11)
- Enhancement of quasiparticle recombination in Ta and Al superconductors by implantation of magnetic and nonmagnetic atoms
- Analysis of Nb3Sn surface layers for superconducting RF cavity applications
- Tuning microwave losses in superconducting resonators
- Sub-micron normal-metal/insulator/superconductor tunnel junction thermometer and cooler using Nb
- High Frequency Nonlinear Response of Superconducting Cavity-Grade Nb surfaces
- Argon milling induced decoherence mechanisms in superconducting quantum circuits
- Microscopic Examination of SRF-quality Nb Films through Local Nonlinear Microwave Response
- Natural width of the superconducting transition in epitaxial TiN films
- Suppressed superconductivity in ultrathin Mo2N films due to pair-breaking at the interface
- Material matters in superconducting qubits
- A Time-Dependent Ginzburg-Landau Framework for Sample-Specific Simulation of Superconductors for SRF Applications