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Anomalous correlation effects and unique phase diagram of electron-doped FeSe revealed by photoemission spectroscopy

机译:光电子能谱揭示电子掺杂FeSe的异常相关效应和独特相图

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摘要

FeSe layer-based superconductors exhibit exotic and distinctive properties. The undoped FeSe shows nematicity and superconductivity, while the heavily electron-doped KxFe2−ySe2 and single-layer FeSe/SrTiO3 possess high superconducting transition temperatures that pose theoretical challenges. However, a comprehensive study on the doping dependence of an FeSe layer-based superconductor is still lacking due to the lack of a clean means of doping control. Through angle-resolved photoemission spectroscopy studies on K-dosed thick FeSe films and FeSe0.93S0.07 bulk crystals, here we reveal the internal connections between these two types of FeSe-based superconductors, and obtain superconductivity below ∼46 K in an FeSe layer under electron doping without interfacial effects. Moreover, we discover an exotic phase diagram of FeSe with electron doping, including a nematic phase, a superconducting dome, a correlation-driven insulating phase and a metallic phase. Such an anomalous phase diagram unveils the remarkable complexity, and highlights the importance of correlations in FeSe layer-based superconductors.
机译:基于FeSe层的超导体展现出奇异而独特的特性。未掺杂的FeSe具有向列性和超导性,而重度电子掺杂的KxFe2-ySe2和单层FeSe / SrTiO3具有较高的超导转变温度,这对理论提出了挑战。然而,由于缺乏干净的掺杂控制手段,仍缺乏对基于FeSe层的超导体的掺杂依赖性的综合研究。通过角度分辨光发射光谱学研究,在K掺杂的厚FeSe薄膜和FeSe0.93S0.07块状晶体上,我们揭示了这两种类型的FeSe基超导体之间的内部连接,并在FeSe层中获得了约46 K以下的超导性。在电子掺杂下没有界面效应。此外,我们发现了带有电子掺杂的FeSe异相图,包括向列相,超导圆顶,相关驱动的绝缘相和金属相。这样的反常相图揭示了显着的复杂性,并强调了在基于FeSe层的超导体中进行相关的重要性。

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