论文标题
可调节点kagome超导率中有序的RBV3SB5
Tunable nodal kagome superconductivity in charge ordered RbV3Sb5
论文作者
论文摘要
非常规的超导体通常具有竞争订单,小型超流体密度和节点电子配对。尽管在Kagome金属AV3SB5中提出了异常的超导性,但主要的光谱证据仍然难以捉摸。在这里,我们利用压力调节(高达1.85 GPA)和超低温度(降至18 mk)MUON自旋光谱法揭示了RBV3SB5中超导性的非常规性。在环境压力下,我们检测到MUON集合感知的内部磁场分布的宽度的增强,表明了时间反转对称性断裂电荷顺序。值得注意的是,超导状态显示淋巴结能隙和降低的超流体密度,这可以归因于与新的电荷顺序的竞争。施加压力后,电荷级过渡被抑制,超流体密度增加,超导状态逐渐从节点发展到无节星。一旦消除了电荷顺序,我们发现一个超导配对状态不仅完全散布,而且会自发打破时间转换对称性。我们的结果表明,前所未有的可调节点Kagome超导性与时间反转对称性的充电顺序竞争,并为配对状态的性质提供独特的见解。
Unconventional superconductors often feature competing orders, small superfluid density, and nodal electronic pairing. While unusual superconductivity has been proposed in the kagome metals AV3Sb5, key spectroscopic evidence has remained elusive. Here we utilize pressure-tuned (up to 1.85 GPa) and ultra-low temperature (down to 18 mK) muon spin spectroscopy to uncover the unconventional nature of superconductivity in RbV3Sb5. At ambient pressure, we detect an enhancement of the width of the internal magnetic field distribution sensed by the muon ensemble, indicative of time-reversal symmetry breaking charge order. Remarkably, the superconducting state displays nodal energy gap and a reduced superfluid density, which can be attributed to the competition with the novel charge order. Upon applying pressure, the charge-order transitions are suppressed, the superfluid density increases, and the superconducting state progressively evolves from nodal to nodeless. Once charge order is eliminated, we find a superconducting pairing state that is not only fully gapped, but also spontaneously breaks time-reversal symmetry. Our results point to unprecedented tunable nodal kagome superconductivity competing with time-reversal symmetry-breaking charge order and offer unique insights into the nature of the pairing state.