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Thorium-doping–induced superconductivity up to 56 K in Gd <sub>1−x</sub> Th <sub>x</sub> FeAsO

Europhysics Letters (EPL) · 2008 · Vol. 83(6) · pp. 67006–67006
Cao WangLinjun LiShun ChiZengwei ZhuZhi RenYuke LiYuetao WangXiao LinYongkang LuoShuai JiangXiangfan XuGuang‐Han CaoZhu‐An Xu

Abstract

Following the discovery of superconductivity in an iron-based arsenide LaO1-xFxFeAs with a superconducting transition temperature (Tc) of 26 K[1], Tc was pushed up surprisingly to above 40 K by either applying pressure[2] or replacing La with Sm[3], Ce[4], Nd[5] and Pr[6]. The maximum Tc has climbed to 55 K, observed in SmO1-xFxFeAs[7, 8] and SmFeAsO1-x[9]. The value of Tc was found to increase with decreasing lattice parameters in LnFeAsO1-xFx (Ln stands for the lanthanide elements) at an apparently optimal doping level. However, the F- doping in GdFeAsO is particularly difficult[10,11] due to the lattice mismatch between the Gd2O2 layers and Fe2As2 layers. Here we report observation of superconductivity with Tc as high as 56 K by the Th4+ substitution for Gd3+ in GdFeAsO. The incorporation of relatively large Th4+ ions relaxes the lattice mismatch, hence induces the high temperature superconductivity.

Iron-based superconductors researchCorporate Taxation and AvoidanceSuperconductivityDopingThoriumCrystalliteCondensed matter physicsMaterials sciencePhysicsMetallurgyUranium
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