论文标题

nematicity对FESE0.91S0.09在压力下的抗铁磁波动与超导性之间关系的影响

Impact of Nematicity on the Relationship between Antiferromagnetic Fluctuations and Superconductivity in FeSe0.91S0.09 Under Pressure

论文作者

Rana, K., Xiang, Li., Wiecki, P., Ribeiro, R. A., Lesseux, G. G., Böhmer, A. E., Bud'ko, S. L., Canfield, P. C., Furukawa, Y.

论文摘要

硫取代的FESE系统,FESE $ _ {1-x} $ s $ _ {x} $,提供了一个多功能平台,用于研究nematicity,抗fiferromagnetism和超导性之间的关系。在这里,通过核磁共振(NMR)和电阻率测量,最高为4.73 GPA $ _ {0.91}​​ $ s $ _ {0.09} $,我们确定了压力($ p $) - 温度($ p $) - 温度($ t $)阶段图,nematic态抑制了nematic sudions nematic sce nematic量子量的nematic量子量($ pep)。通过QPT,出现和抗铁磁(AFM)阶段出现在$ \ sim $ 3.3 GPA以上。从NMR的结果到2.1 GPA,AFM波动的特征是条带型波形,这在两个SC区域保持不变。此外,发现电子状态的特征从非弗尔米液体变为列前QPT周围的费米液体,并持续到$ \ sim $ 2.1 GPA。此外,尽管AFM波动与两个SC状态下的$ t _ {\ rm c} $相关,这证明了AFM波动对于系统中SC出现的重要性,但我们发现,当不存在nematorative时,$ t _ {\ rm c} $与afm fluctuations $ n nemer clim clim clim clim clim clim clim compy。当存在列表时,取决于AFM波动。我们对FESE $ _ {0.91}​​ $ s $ _ {0.09} $的发现被证明应用于整个FESE $ _ {1-x} $ s $ _ {x} $系统,还为基于Fe的FE MADDOCCODUCTORS中的AFM波动和SC之间的关系提供了新的洞察力。

The sulfur substituted FeSe system, FeSe$_{1-x}$S$_{x}$, provides a versatile platform for studying the relationship between nematicity, antiferromagnetism, and superconductivity. Here, by nuclear magnetic resonance (NMR) and resistivity measurements up to 4.73 GPa on FeSe$_{0.91}$S$_{0.09}$, we established the pressure($p$)-temperature($T$) phase diagram in which the nematic state is suppressed with pressure showing a nematic quantum phase transition (QPT) around $p$ = 0.5 GPa, two SC regions, separated by the QPT, appear and antiferromagnetic (AFM) phase emerges above $\sim$3.3 GPa. From the NMR results up to 2.1 GPa, AFM fluctuations are revealed to be characterized by the stripe-type wavevector which remains the same for the two SC regions. Furthermore, the electronic state is found to change in character from non-Fermi liquid to Fermi liquid around the nematic QPT and persists up to $\sim$ 2.1 GPa. In addition, although the AFM fluctuations correlate with $T_{\rm c}$ in both SC states, demonstrating the importance of the AFM fluctuations for the appearance of SC in the system, we found that, when nematic order is absent, $T_{\rm c}$ is strongly correlated with the AFM fluctuations, whereas $T_{\rm c}$ weakly depends on the AFM fluctuations when nematic order is present. Our findings on FeSe$_{0.91}$S$_{0.09}$ were shown to be applied to the whole FeSe$_{1-x}$S$_{x}$ system and also provide a new insight into the relationship between AFM fluctuations and SC in Fe-based superconductors.

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