论文标题

通过hund的耦合诱导的电子跨界车在yfe $ _2 $ _2 $ ge $ _2美元

Approaching itinerant magnetic quantum criticality through a Hund's coupling induced electronic crossover in the YFe$_2$Ge$_2$ superconductor

论文作者

Zhao, D., Wo, H. L., Li, J., Song, D. W., Zheng, L. X., Li, S. J., Nie, L. P., Luo, X. G., Zhao, J., Wu, T., Chen, X. H.

论文摘要

在这里,通过进行系统的$^{89} $ y NMR研究,我们在新发现的基于铁的超导体yfe $ _2 $ ge $ _2 $中探索了磁接地状态的性质。由于Hund的耦合诱导的电子相关性,在交叉温度$ t^*\ sim 75 \ pm15 \,\ mathrm {k} $下方揭示了一个不连贯的交叉。在电子交叉期间,骑士移位($ K $)和散装磁化率($χ$)都表现出相似的非单调温度依赖性,以及所谓的骑士偏移异常,也通过细心的$ k $ - $ $χ$分析揭示。在重孔掺杂的Pnictide超导体\ emph {a} fe $ _2 $ AS $ _2 $(\ emph {a} = k,rb和cs)中也观察到了这样的电子跨界。 $ t^*$以下,自旋晶格放松率除以温度$(1/t_1t)$显示出与骑士移位相似的抑制作用,这表明没有临界自旋波动。这似乎与该系统附近的预测磁量子临界点(QCP)相抵触。但是,考虑到$ \ mathbf {q} $ - 依赖性的“滤波器”对转移的超精细场的影响,以$^{89} $ y网站的质量筛选出主要的旋转波动,这与最近的弹性中子散射结果是一致的。因此,我们的结果证实,通过hund的耦合诱导的电子跨界,yfe $ _2 $ ge $ _2 $的磁接地状态与具有A型自旋波动的巡回磁性QCP接近。另外,还讨论了由于自旋波动而可能导致的超导配对。

Here, by conducting a systematic $^{89}$Y NMR study, we explore the nature of the magnetic ground state in a newly discovered iron-based superconductor YFe$_2$Ge$_2$. An incoherent-to-coherent crossover due to the Hund's coupling induced electronic correlation is revealed below the crossover temperature $T^*\sim 75\pm15\,\mathrm{K}$. During the electronic crossover, both the Knight shift ($K$) and the bulk magnetic susceptibility ($χ$) exhibit a similar nonmonotonic temperature dependence, and a so-called Knight shift anomaly is also revealed by a careful $K$-$χ$ analysis. Such an electronic crossover has been also observed in heavily hole-doped pnictide superconductors \emph{A}Fe$_2$As$_2$ (\emph{A} = K, Rb, and Cs), which is ascribed to the Hund's coupling induced electronic correlation. Below $T^*$, the spin-lattice relaxation rate divided by temperature $(1/T_1T)$ shows a similar suppression as the Knight shift, suggesting the absence of critical spin fluctuations. This seems to be in conflict with a predicted magnetic quantum critical point (QCP) near this system. However, considering a $\mathbf{q}$-dependent "filter" effect on the transferred hyperfine field, a predominant spin fluctuation with A-type correlation would be perfectly filtered out at $^{89}$Y sites, which is consistent with the recent inelastic neutron scattering results. Therefore, our results confirm that, through a Hund's coupling induced electronic crossover, the magnetic ground state of YFe$_2$Ge$_2$ becomes close to an itinerant magnetic QCP with A-type spin fluctuations. In addition, the possible superconducting pairing due to spin fluctuations is also discussed.

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