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Superconductivity in the iron-based F-doped layered quaternary compound Nd[O <sub>1 − x</sub> F <sub>x</sub> ]FeAs

Europhysics Letters (EPL) · 2008 · Vol. 82(5) · pp. 57002–57002
Zhi-An RenJie YangWei LuWei YiXiao-Li ShenZheng-Cai LiGuang-Can CheXiao-Li DongLi-Ling SunFang ZhouZhong-Xian Zhao

Abstract

The recently discovered quaternary arsenide oxide superconductor La[O1-xFx]FeAs with the superconducting critical transition temperature (Tc) of 26 K [1], has been quickly expanded to another high-Tc superconducting system beyond copper oxides by the replacement of La with other rare earth elements, such as Sm, Ce, and Pr etc. [2-4], and the Pr[O1-xFx]FeAs has become to be the first non-cuprate superconductor that holding a Tc above 50 K. All these arsenide (including phosphide) superconductors formed in a same tetragonal layered structure with the space group P4/nmm which has an alternant stacked Fe-As layer and RO (R = rare earth metals) layer. Here we report the discovery of another superconductor in this system, the neodymium-arsenide Nd[O1-xFx]FeAs with an resistivity onset Tc of 51.9 K, which is the second non-cuprate compound that superconducts above 50 K.

Iron-based superconductors researchMagnetic and transport properties of perovskites and related materialsPhysics of Superconductivity and MagnetismSuperconductivityArsenideTetragonal crystal systemElectrical resistivity and conductivityOxideTransition temperatureHigh-temperature superconductivityRare earth
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Superconductivity in the iron-based F-doped layered quaternary compound Nd[O <sub>1 − x</sub> F <sub>x</sub> ]FeAs · Scinovex