Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
Department of Advanced Materials Science, University of Tokyo, Kashiwa, Chiba 277-8561, Japan.
Nat Commun. 2016 Jul 19;7:12146. doi: 10.1038/ncomms12146.
The coexistence and competition between superconductivity and electronic orders, such as spin or charge density waves, have been a central issue in high transition-temperature (Tc) superconductors. Unlike other iron-based superconductors, FeSe exhibits nematic ordering without magnetism whose relationship with its superconductivity remains unclear. Moreover, a pressure-induced fourfold increase of Tc has been reported, which poses a profound mystery. Here we report high-pressure magnetotransport measurements in FeSe up to ∼15 GPa, which uncover the dome shape of magnetic phase superseding the nematic order. Above ∼6 GPa the sudden enhancement of superconductivity (Tc≤38.3 K) accompanies a suppression of magnetic order, demonstrating their competing nature with very similar energy scales. Above the magnetic dome, we find anomalous transport properties suggesting a possible pseudogap formation, whereas linear-in-temperature resistivity is observed in the normal states of the high-Tc phase above 6 GPa. The obtained phase diagram highlights unique features of FeSe among iron-based superconductors, but bears some resemblance to that of high-Tc cuprates.
超导性和电子有序(如自旋或电荷密度波)之间的共存和竞争一直是高温超导(Tc)的一个核心问题。与其他铁基超导体不同,FeSe 表现出没有磁性的向列有序,其与超导性的关系尚不清楚。此外,已经报道了压力诱导的 Tc 四倍增加,这构成了一个深刻的谜团。在这里,我们报告了在高达约 15 GPa 的压力下的 FeSe 的高压磁输运测量,该测量揭示了磁相取代向列有序的穹顶形状。在约 6 GPa 以上,超导性(Tc≤38.3 K)的突然增强伴随着磁有序的抑制,表明它们具有非常相似的能量尺度的竞争性质。在磁穹顶上方,我们发现了异常的输运性质,表明可能形成赝能隙,而在高于 6 GPa 的高 Tc 相的正常状态下观察到了与温度呈线性关系的电阻率。所得到的相图突出了 FeSe 在铁基超导体中的独特特征,但与高温铜酸盐的相图有些相似。