Th substituted SmFeAsO: structural details and superconductivity with Tc above 50 K
N. D. Zhigadlo, S. Katrych, S. Weyeneth, R. Puzniak, P. Moll, Z., Bukowski, J. Karpinski, H. Keller, and B. Batlogg

TL;DR
This study synthesizes Th-substituted SmFeAsO superconductors, revealing Tc above 50 K, detailed structural changes, and high critical current densities, advancing understanding of their properties for potential applications.
Contribution
It provides new insights into the structural, magnetic, and transport properties of Th-doped SmFeAsO superconductors with Tc above 50 K, including detailed structural analysis and critical current measurements.
Findings
Superconducting Tc exceeds 50 K in Th-doped SmFeAsO.
No phase transition from tetragonal to orthorhombic structure observed.
High critical current densities achieved in polycrystalline and single-crystal samples.
Abstract
Superconducting poly- and single-crystalline samples of Sm1-xThxFeAsO with partial substitution of Sm3+ by Th4+ were synthesized and grown under high pressure and their structural, magnetic and transport properties are studied. The superconducting Tc reaches values higher than 50 K. Bulk superconducting samples (x = 0.08, 0.15, 0.3) do not show any signs of a phase transition from tetragonal to orthorhombic crystal structure at low temperatures. With Th substitution the unit cell parameters a and c shrink and the fractional atomic coordinate of the As site zAs remains almost unchanged, while that of Sm/Th zSm/Th increases. Upon warming from 5 K to 295 K the expansion of the FeAs layer thickness is dominant, while the changes in the other structural building blocks are smaller by a factor of 1/5, and they compensate each other, since the As-Sm/Th distance appears to contract by about the…
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