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(Li(1-x)Fe(x))OHFeSe 的相图:铁硒化物和铁砷化物超导体之间的桥梁。

Phase diagram of (Li(1-x)Fe(x))OHFeSe: a bridge between iron selenide and arsenide superconductors.

机构信息

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Science , Beijing 100190, China.

出版信息

J Am Chem Soc. 2015 Jan 14;137(1):66-9. doi: 10.1021/ja511292f. Epub 2014 Dec 29.

Abstract

Previous experimental results have shown important differences between iron selenide and arsenide superconductors which seem to suggest that the high-temperature superconductivity in these two subgroups of iron-based families may arise from different electronic ground states. Here we report the complete phase diagram of a newly synthesized superconducting (SC) system, (Li1-xFex)OHFeSe, with a structure similar to that of FeAs-based superconductors. In the non-SC samples, an antiferromagnetic (AFM) spin-density-wave (SDW) transition occurs at ∼127 K. This is the first example to demonstrate such an SDW phase in an FeSe-based superconductor system. Transmission electron microscopy shows that a well-known √5×√5 iron vacancy ordered state, resulting in an AFM order at ∼500 K in AyFe2-xSe2 (A = metal ions) superconductor systems, is absent in both non-SC and SC samples, but a unique superstructure with a modulation wave vector q = (1)/2(1,1,0), identical to that seen in the SC phase of KyFe2-xSe2, is dominant in the optimal SC sample (with an SC transition temperature Tc = 40 K). Hence, we conclude that the high-Tc superconductivity in (Li1-xFex)OHFeSe stems from the similarly weak AFM fluctuations as FeAs-based superconductors, suggesting a universal physical picture for both iron selenide and arsenide superconductors.

摘要

先前的实验结果表明,硒化亚铁和砷化亚铁超导体之间存在重要差异,这似乎表明这两个铁基家族亚组中的高温超导可能源于不同的电子基态。在这里,我们报告了一个新合成的超导(SC)系统(Li1-xFex)OHFeSe 的完整相图,其结构与 FeAs 基超导体相似。在非 SC 样品中,反铁磁(AFM)自旋密度波(SDW)转变发生在约 127 K。这是第一个在 FeSe 基超导体系中证明存在这种 SDW 相的例子。透射电子显微镜表明,在 AyFe2-xSe2(A = 金属离子)超导体系中,以在 ∼500 K 处产生 AFM 序的著名√5×√5 铁空位有序态并不存在于非 SC 和 SC 样品中,但在最优 SC 样品中存在独特的超结构,调制波矢 q = (1)/2(1,1,0),与 KyFe2-xSe2 的 SC 相中看到的相同。因此,我们得出结论,(Li1-xFex)OHFeSe 中的高温超导源于与 FeAs 基超导体相似的弱 AFM 涨落,这表明铁硒化物和砷化物超导体具有普遍的物理图像。

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