Enhanced critical-current in P-doped BaFe 2 As 2 thin films on metal substrates arising from poorly aligned grain boundaries

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Abstract

Thin films of the iron-based superconductor BaFe 2 (As 1 'x P x) 2 (Ba122:P) were fabricated on polycrystalline metal-tape substrates with two kinds of in-plane grain boundary alignments (well aligned (4°) and poorly aligned (8°)) by pulsed laser deposition. The poorly aligned substrate is not applicable to cuprate-coated conductors because the in-plane alignment >4° results in exponential decay of the critical current density (J c). The Ba122:P film exhibited higher J c at 4 K when grown on the poorly aligned substrate than on the well-aligned substrate even though the crystallinity was poorer. It was revealed that the misorientation angles of the poorly aligned samples were less than 6°, which are less than the critical angle of an iron-based superconductor, cobalt-doped BaFe 2 As 2 (∼9°), and the observed strong pinning in the Ba122:P is attributed to the high-density grain boundaries with the misorientation angles smaller than the critical angle. This result reveals a distinct advantage over cuprate-coated conductors because well-aligned metal-tape substrates are not necessary for practical applications of the iron-based superconductors.

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Sato, H., Hiramatsu, H., Kamiya, T., & Hosono, H. (2016). Enhanced critical-current in P-doped BaFe 2 As 2 thin films on metal substrates arising from poorly aligned grain boundaries. Scientific Reports, 6. https://doi.org/10.1038/srep36828

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