论文标题

超导kagome材料CSV $ _3 $ sb $ _5 $中的两种类型的充电顺序

Two types of charge order in the superconducting kagome material CsV$_3$Sb$_5$

论文作者

Gupta, Ritu, Das, Debarchan, Mielke III, Charles, Ritz, Ethan, Hotz, Fabian, Yin, Qiangwei, Tu, Zhijun, Gong, Chunsheng, Lei, Hechang, Birol, Turan, Fernandes, Rafael M., Guguchia, Zurab, Luetkens, Hubertus, Khasanov, Rustem

论文摘要

家族的Kagome金属$ a $ v $ _3 $ sb $ _5 $,具有独特的结构图案,带有一系列有趣的现象,例如手性收费订单和超导性。 CSV $ _3 $ sb $ _5 $特别令人感兴趣,因为它在仍然存在充电顺序的温度压力相图中显示了双重导向圆顶。但是,这种异常行为的微观起源仍然是一个未解决的问题。在这里,为了解决这个问题,我们将高压,低温的MUON自旋松弛与第一原理计算相结合。我们观察到压力诱导的超流体密度增强的三倍增强,这也显示出双峰特征,类似于超导临界温度。这导致相图中的三个不同区域,每个区域都具有超流体密度和临界温度之间线性关系的不同斜率。这些结果归因于在低压(在第一个圆顶内)叠加到偏移的三甲状腺恒星相位的电荷顺序模式可能演变为中间压力(第一和第二个圆顶之间)的交错的三甲状腺侧相。我们的发现表明,在CSV $ _3 $ _3 $ sb $ _5 $的整个相位图中,收费状态的性质发生了变化,并具有不同程度的竞争,并具有超导性。

The kagome metals of the family $A$V$_3$Sb$_5$, featuring a unique structural motif, harbor an array of intriguing phenomena such as chiral charge order and superconductivity. CsV$_3$Sb$_5$ is of particular interest because it displays a double superconducting dome in the region of the temperature-pressure phase diagram where charge order is still present. However, the microscopic origin of such an unusual behavior remains an unsolved issue. Here, to address it, we combine high-pressure, low-temperature muon spin relaxation with first-principles calculations. We observe a pressure-induced threefold enhancement of the superfluid density, which also displays a double peak feature, similar to the superconducting critical temperature. This leads to three distinct regions in the phase diagram, each of which features distinct slopes of the linear relation between superfluid density and the critical temperature. These results are attributed to a possible evolution of the charge order pattern from the superimposed tri-hexagonal Star-of-David phase at low pressures (within the first dome) to the staggered tri-hexagonal phase at intermediate pressures (between the first and second domes). Our findings suggest a change in the nature of the charge ordered state across the phase diagram of CsV$_3$Sb$_5$, with varying degrees of competition with superconductivity.

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