Strong Meissner screening change in superconducting radio frequency cavities due to mild baking
arXiv:1311.7153 · doi:10.1063/1.4866013
Abstract
We investigate "hot" regions with anomalous high field dissipation in bulk niobium superconducting radio frequency cavities for particle accelerators by using low energy muon spin rotation (LE-SR) on corresponding cavity cutouts. We demonstrate that superconducting properties at the hot region are well described by the non-local Pippard/BCS model for niobium in the clean limit with a London penetration depth nm. In contrast, a cutout sample from the 120C baked cavity shows a much larger nm and a depth dependent mean free path, likely due to gradient in vacancy concentration. We suggest that these vacancies can efficiently trap hydrogen and hence prevent the formation of hydrides responsible for rf losses in hot regions.
References in corpus (2)
Cited by in corpus (26)
- Ultra-high quality factors in superconducting niobium cavities in ambient magnetic fields up to 190 mG
- Dependence of the residual surface resistance of superconducting RF cavities on the cooling dynamics around
- Multilayer coating for higher accelerating fields in superconducting radio-frequency cavities: a review of theoretical aspects
- Field-dependent nonlinear surface resistance and its optimization by surface nano-structuring in superconductors
- Sensitivity of Niobium Superconducting Cavities to Trapped Magnetic Flux Dissipation
- Time-dependent Ginzburg-Landau treatment of RF Magnetic Vortices in Superconductors: Vortex-Semiloops in a Spatially Nonuniform Magnetic Field
- Flux expulsion in niobium superconducting radio-frequency cavities of different purity and essential contributions to the flux sensitivity
- Superheating fields of semi-infinite superconductors and layered superconductors in the diffusive limit: structural optimization based on the microscopic theory
- Field of first flux entry and pinning strength of superconductors for RF application measured with muon spin rotation
- Field limit and nano-scale surface topography of superconducting radio-frequency cavity made of extreme type II superconductor
- Frequency dependence of trapped flux sensitivity in SRF cavities
- Depth-resolved measurements of the Meissner screening profile in surface-treated Nb
- High-Field Q-slope Mitigation due to Impurity Profile in Superconducting Radio-Frequency Cavities
- Superheating in coated niobium
- Evidence for current suppression in superconductor-superconductor bilayers
- A low energy muon spin rotation and point contact tunneling study of niobium films prepared for superconducting cavities
- Vortex Dynamics and Dissipation Under High-amplitude Microwave Drive
- Comment on "Strong Meissner screening change in superconducting radio frequency cavities due to mild baking" [Appl. Phys. Lett. 104, 072601 (2014)]
- Measurements of the first-flux-penetration field in surface-treated and coated Nb: Distinguishing between surface pinning and an interface energy barrier
- Depth-resolved measurement of the Meissner screening profile in a niobium thin film from spin-lattice relaxation of the implanted -emitter Li
- Effective penetration length and interstitial vortex pinning in superconducting films with regular arrays of defects
- Depth-resolved Characterization of Meissner Screening Breakdown in Surface Treated Niobium
- Search for inhomogeneous Meissner screening in Nb induced by low-temperature surface treatments
- Niobium's intrinsic coherence length and penetration depth revisited using low-energy muon spin spectroscopy and secondary-ion mass spectrometry
- Significant improvement of the lower critical field in Y doped Nb: potential replacement of basic material for the radio-frequency superconducting cavity
- Implantation studies of low-energy positive muons in niobium thin films