Benefits of current percolation in superconducting coated conductors
arXiv:cond-mat/0506404 · doi:10.1063/1.2093920
Abstract
The critical currents of MOD/RABiTS and PLD/IBAD coated conductors have been measured as a function of magnetic field orientation and compared to films grown on single crystal substrates. By varying the orientation of magnetic field applied in the plane of the film, we are able to determine the extent to which current flow in each type of conductor is percolative. Standard MOD/RABiTS conductors have also been compared to samples whose grain boundaries have been doped by diffusing Ca from an overlayer. We find that undoped MOD/RABiTS tapes have a less anisotropic in-plane field dependence than PLD/IBAD tapes and that the uniformity of critical current as a function of in-plane field angle is greater for MOD/RABiTS samples doped with Ca.
Submitted to APL
References in corpus (1)
Cited by in corpus (5)
- Percolative superconductivity in La2CuO4.06 by lattice granularity patterns with scanning micro X-ray absorption near edge structure
- Theory and experiment testing flux-line-cutting physics
- Theory of flux cutting and flux transport at the critical current of a type-II superconducting cylindrical wire
- On narrowing coated conductor film: emergence of granularity-induced field hysteresis of transport critical current
- Individual grain boundary properties and overall performance of metal-organic-deposition coated conductors