College of Humanities &Sciences, Nihon University, Sakurajosui, Setagaya-ku, Tokyo 156-8550, Japan.
Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai, Miyagi 980-8577, Japan.
Nat Mater. 2015 Oct;14(10):1008-12. doi: 10.1038/nmat4351. Epub 2015 Jul 20.
All the iron-based superconductors identified so far share a square lattice composed of Fe atoms as a common feature, despite having different crystal structures. In copper-based materials, the superconducting phase emerges not only in square-lattice structures but also in ladder structures. Yet iron-based superconductors without a square-lattice motif have not been found, despite being actively sought out. Here, we report the discovery of pressure-induced superconductivity in the iron-based spin-ladder material BaFe2S3, a Mott insulator with striped-type magnetic ordering below ∼120 K. On the application of pressure this compound exhibits a metal-insulator transition at about 11 GPa, followed by the appearance of superconductivity below Tc = 14 K, right after the onset of the metallic phase. Our findings indicate that iron-based ladder compounds represent promising material platforms, in particular for studying the fundamentals of iron-based superconductivity.
迄今为止发现的所有铁基超导体都具有一个共同的特征,即由 Fe 原子组成的正方形晶格,尽管它们具有不同的晶体结构。在铜基材料中,超导相不仅出现在正方形晶格结构中,也出现在梯形结构中。然而,尽管积极寻找,但尚未发现没有正方形晶格结构的铁基超导体。在这里,我们报告了在铁基自旋梯状材料 BaFe2S3 中发现的压力诱导超导现象,该材料在约 120 K 以下表现出条纹型磁有序的莫特绝缘体。在施加压力时,该化合物在约 11 GPa 处表现出金属-绝缘体转变,随后在 Tc = 14 K 以下出现超导现象,正好在金属相开始出现之后。我们的发现表明,铁基梯状化合物是很有前途的材料平台,特别是对于研究铁基超导的基础。