Roles of intrinsic anisotropy and pi-band pairbreaking effects on critical currents in tilted c-axis MgB2 films probed by magneto-optical and transport measurements
A.A. Polyanskii, F. Kametani, D. Abraimov, A. Gurevich, A. Yamamoto,, I. Pallecchi, M. Putti, C. Zhuang, T. Tan, X.X. Xi

TL;DR
This study investigates how intrinsic anisotropy and pi-band pairbreaking effects influence critical current densities in tilted c-axis MgB2 films, revealing the role of multiband effects and surface morphology in current transport.
Contribution
It introduces a model of anisotropic vortex pinning that explains the impact of pi-band pairbreaking on critical current anisotropy in MgB2 films.
Findings
Jc along terraced steps exceeds perpendicular Jc
Thinner films reach ~10% of depairing current density in the ab plane
Out-of-plane current transport limits Jc in MgB2 polycrystals
Abstract
Investigations of MgB2 and Fe-based superconductors in recent years have revealed many unusual effects of multiband superconductivity but manifestations of anisotropic multiband effects in the critical current density Jc have not been addressed experimentally, mostly because of the difficulties to measure Jc along the c-axis. To investigate the effect of very different intrinsic anisotropies of sigma and pi electron bands in MgB2 on current transport, we grew epitaxial films with tilted c-axis (THETA ~ 19.5{\deg}), which enabled us to measure the components of Jc both along the ab-plane and the c-axis using magneto-optical and transport techniques. These measurements were combined with scanning and transmission electron microscopy, which revealed terraced steps on the surface of the c-axis tilted films. The measured field and temperature dependencies of the anisotropic Jc(H) show that…
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