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Emergent superconductivity in an iron-based honeycomb lattice initiated by pressure-driven spin-crossover

机译:压力驱动的自旋交联在铁基蜂窝状晶格中出现超导电性

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摘要

The discovery of iron-based superconductors (FeSCs), with the highest transition temperature (Tc) up to 55 K, has attracted worldwide research efforts over the past ten years. So far, all these FeSCs structurally adopt FeSe-type layers with a square iron lattice and superconductivity can be generated by either chemical doping or external pressure. Herein, we report the observation of superconductivity in an iron-based honeycomb lattice via pressure-driven spin-crossover. Under compression, the layered FePX3 (X = S, Se) simultaneously undergo large in-plane lattice collapses, abrupt spin-crossovers, and insulator-metal transitions. Superconductivity emerges in FePSe3 along with the structural transition and vanishing of magnetic moment with a starting Tc ~ 2.5 K at 9.0 GPa and the maximum Tc ~ 5.5 K around 30 GPa. The discovery of superconductivity in iron-based honeycomb lattice provides a demonstration for the pursuit of transition-metal-based superconductors via pressure-driven spin-crossover.
机译:最高转变温度(Tc)高达55 K的铁基超导体(FeSCs)的发现在过去十年中吸引了全世界的研究工作。到目前为止,所有这些FeSC都在结构上采用具有方形铁晶格的FeSe型层,并且可以通过化学掺杂或外部压力产生超导性。在本文中,我们报告了通过压力驱动的自旋交叉在铁基蜂窝状晶格中的超导现象。在压缩下,层状FePX3(X = S,Se)同时经历大的面内晶格塌陷,突然的自旋交叉和绝缘体-金属跃迁。 FePSe3随结构转变和磁矩的消失而出现超导,其起始Tc〜2.5 K在9.0 GPa时出现,最大Tc〜5.5 K在30 GPa时出现。铁基蜂窝状晶格中超导性的发现为通过压力驱动的自旋交联追求过渡金属基超导体提供了证明。

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