New Fe-based superconductors: properties relevant for applications
M Putti, I Pallecchi, E Bellingeri, M Tropeano, C Ferdeghini, A, Palenzona C Tarantini, A Yamamoto, J Jiang, J Jaroszynski, F Kametani, D, Abraimov, A Polyanskii, J D Weiss, E E Hellstrom, A Gurevich, D C, Larbalestier, R Jin, B C Sales, A S Sefat, M A McGuire, D Mandrus

TL;DR
This paper reviews Fe-based superconductors, comparing their properties such as critical fields, anisotropy, and current densities, to assess their potential for practical applications.
Contribution
It provides a comparative overview of different Fe-based superconductor families focusing on properties relevant for applications.
Findings
1111 family has the highest Tc but is highly anisotropic
122 family has lower Tc but is less anisotropic and has sharper transitions
Fe-based superconductors have metallic parent compounds and potentially better grain boundary transmission
Abstract
Less than two years after the discovery of high temperature superconductivity in oxypnictide LaFeAs(O,F) several families of superconductors based on Fe layers (1111, 122, 11, 111) are available. They share several characteristics with cuprate superconductors that compromise easy applications, such as the layered structure, the small coherence length, and unconventional pairing, On the other hand the Fe-based superconductors have metallic parent compounds, and their electronic anisotropy is generally smaller and does not strongly depend on the level of doping, the supposed order parameter symmetry is s wave, thus in principle not so detrimental to current transmission across grain boundaries. From the application point of view, the main efforts are still devoted to investigate the superconducting properties, to distinguish intrinsic from extrinsic behaviours and to compare the different…
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