High magnetic field scales and critical currents in SmFeAs(O,F) crystals: promising for applications
Philip J.W. Moll, Roman Puzniak, Fedor Balakirev, Krzysztof Rogacki,, Janusz Karpinski, Nikolai D. Zhigadlo, Bertram Batlogg

TL;DR
This study demonstrates that optimally doped SmFeAs(O,F) crystals exhibit high and nearly isotropic critical current densities under high magnetic fields, indicating strong potential for superconducting applications.
Contribution
The paper provides detailed measurements of critical currents and anisotropy in SmFeAs(O,F) crystals up to 65 T, highlighting their promising application potential due to high, isotropic critical current densities.
Findings
Critical current density exceeds 2 x 10^6 A/cm^2
Critical currents are nearly isotropic across crystal directions
High upper critical field suggests strong application potential
Abstract
Superconducting technology provides most sensitive field detectors, promising implementations of qubits and high field magnets for medical imaging and for most powerful particle accelerators. Thus, with the discovery of new superconducting materials, such as the iron pnictides, exploring their potential for applications is one of the foremost tasks. Even if the critical temperature Tc is high, intrinsic electronic properties might render applications rather difficult, particularly if extreme electronic anisotropy prevents effective pinning of vortices and thus severely limits the critical current density, a problem well known for cuprates. While many questions concerning microscopic electronic properties of the iron pnictides have been successfully addressed and estimates point to a very high upper critical field, their application potential is less clarified. Thus we focus here on the…
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