论文标题

压力诱导的抗铁磁量子临界点的证据ute2

Evidence for a pressure-induced antiferromagnetic quantum critical point in intermediate valence UTe2

论文作者

Thomas, S. M., Santos, F. B., Christensen, M. H., Asaba, T., Ronning, F., Thompson, J. D., Bauer, E. D., Fernandes, R. M., Fabbris, G., Rosa, P. F. S.

论文摘要

UTE $ _2 $是最近发现的非常规的超导体,由于其许多有趣的特性,它引起了极大的兴趣 - 超导状态下的残留密度密度,在高磁场中的重新进入超导性,以及潜在的自旋旋转拓扑超导性。在施加压力下,我们对UTE $ _2 $的AC量热法,电阻率和X射线吸收研究揭示了有关围绕压力诱导的量子关键的超导和磁状态的关键新见解。首先,我们在低压力下的特定热数据与现象学模型相结合,表明压力改变了两个紧密竞争的超导顺序之间的平衡。其次,接近1.5 GPA,我们检测到两个散装的转变,这些转变触发了电阻率的变化,这与抗铁磁顺序一致,而不是铁磁性。在p $ _ {c2} $ = 1.4 GPA的压力下,散装磁性和超导性的存在导致电阻性和热力学确定的过渡到超导状态之间存在显着的温度差,这表明抑制了通过磁性顺序对超导体积分数的抑制。第三,磁性的出现伴随着对u $^{4+} $(5f2)状态的价增加,这表明UTE $ _2 $在环境压力下表现出中级价。我们的结果表明,抗铁磁波动可能比以前认为的UTE $ _2 $的超导状态更重要。

UTe$_2$ is a recently discovered unconventional superconductor that has attracted much interest due to its many intriguing properties - a large residual density-of-states in the superconducting state, re-entrant superconductivity in high magnetic fields, and potentially spin-triplet topological superconductivity. Our ac calorimetry, electrical resistivity, and x-ray absorption study of UTe$_2$ under applied pressure reveals key new insights on the superconducting and magnetic states surrounding pressure-induced quantum criticality at P$_{c1}$ = 1.3 GPa. First, our specific heat data at low pressures, combined with a phenomenological model, show that pressure alters the balance between two closely competing superconducting orders. Second, near 1.5 GPa we detect two bulk transitions that trigger changes in the resistivity which are consistent with antiferromagnetic order, rather than ferromagnetism. The presence of both bulk magnetism and superconductivity at pressures above P$_{c2}$ = 1.4 GPa results in a significant temperature difference between resistively and thermodynamically determined transitions into the superconducting state, which indicates a suppression of the superconducting volume fraction by magnetic order. Third, the emergence of magnetism is accompanied by an increase in valence towards a U$^{4+}$ (5f2) state, which indicates that UTe$_2$ exhibits intermediate valence at ambient pressure. Our results suggest that antiferromagnetic fluctuations may play a more significant role on the superconducting state of UTe$_2$ than previously thought.

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