Assessing the spatial and field dependence of the critical current density in YBCO bulk superconductors by scanning Hall probes
F. Hengstberger, M. Eisterer, M. Zehetmayer, H. W. Weber

TL;DR
This paper introduces a novel non-iterative method using scanning Hall probes to accurately assess the spatial and field dependence of the critical current density in thin YBCO superconducting samples, overcoming limitations of traditional inversion techniques.
Contribution
A new procedure exploiting symmetry and assuming planar current density enables direct calculation of Jc(B) in bulk superconductors, including low-field regions inaccessible to magnetization methods.
Findings
The method accurately determines Jc(B) in thin YBCO samples.
It accounts for self-field effects in magnetization measurements.
The approach provides spatially resolved critical current density data.
Abstract
Although the flux density map of a bulk superconductor provides in principle sufficient information for calculating the magnitude and the direction of the supercurrent flow, the inversion of the Biot-Savart law is ill conditioned for thick samples, thus rendering this method unsuitable for state of the art bulk superconductors. If a thin (< 1 mm) slab is cut from the bulk, the inversion is reasonably well conditioned and the variation of the critical current density in the sample can be calculated with adequate spatial resolution. Therefore a novel procedure is employed, which exploits the symmetry of the problem and solves the equations non-iteratively, assuming a planar z-independent current density. The calculated current density at a certain position is found to depend on the magnetic induction. In this way the average field dependence of the critical current density Jc(B) is…
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