通过μ介子自旋旋转微观探测Ta2V3.1Si0.9的超导和正常态特性

IF 7.5 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Communications Materials Pub Date : 2024-10-12 DOI:10.1038/s43246-024-00666-2
J. N. Graham, H. Liu, V. Sazgari, C. Mielke III, M. Medarde, H. Luetkens, R. Khasanov, Y. Shi, Z. Guguchia
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摘要

二维卡戈米晶格是新物理现象的实验场,从挫折磁性和拓扑物质到手性电荷秩序和非传统超导性。最近,一种新发现的卡戈米超导体 Ta2V3.1Si0.9 因其在环境压力下创下卡戈米金属的最高临界温度(TC = 7.5 K)而备受关注。在这项研究中,我们进行了一系列μ介子自旋旋转测量,以深入了解 Ta2V3.1Si0.9 的超导和正常态特性。我们证明,Ta2V3.1Si0.9 是一种具有 s+s 波或各向异性 s 波间隙对称性的体超导体,并且在超导态对外部磁场的响应中具有不寻常的顺磁性偏移。此外,我们还观察到超流体密度极低,这是非常规超导电性的一个显著特征。在正常状态下,Ta2V3.1Si0.9 的零场μ介子自旋去极化率从大约 150 K 开始显著增加,这在其他卡哥美晶格超导体中也被观察到,因此暗示了可能的隐藏磁性。这些发现表明,Ta2V3.1Si0.9 是一种非常规超导体,也是钒基卡戈米材料家族中值得注意的新成员。Ta2V3.1Si0.9 是一种有趣的卡戈梅超导体,其临界温度为 7.5 K,创下了卡戈梅金属在常压下的最高纪录。在这里,μ介子自旋旋转测量揭示了对外部磁场反应的不寻常顺磁性偏移,以及尽管具有高临界温度却异常稀薄的超流体密度,这标志着超导的非常规性质。
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Microscopic probing of the superconducting and normal state properties of Ta2V3.1Si0.9 by muon spin rotation
The two-dimensional kagome lattice is an experimental playground for novel physical phenomena, from frustrated magnetism and topological matter to chiral charge order and unconventional superconductivity. A newly identified kagome superconductor, Ta2V3.1Si0.9 has recently gained attention for possessing a record high critical temperature, TC = 7.5 K for kagome metals at ambient pressure. In this study we conducted a series of muon spin rotation measurements to delve deeper into understanding the superconducting and normal state properties of Ta2V3.1Si0.9. We demonstrate that Ta2V3.1Si0.9 is a bulk superconductor with either a s+s-wave or anisotropic s-wave gap symmetry, and has an unusual paramagnetic shift in response to external magnetic fields in the superconducting state. Additionally, we observe an exceptionally low superfluid density − a distinctive characteristic of unconventional superconductivity − which remarkably is comparable to the superfluid density found in hole-doped cuprates. In its normal state, Ta2V3.1Si0.9 exhibits a significant increase in the zero-field muon spin depolarisation rate, starting at approximately 150 K, which has been observed in other kagome-lattice superconductors, and therefore hints at possible hidden magnetism. These findings characterise Ta2V3.1Si0.9 as an unconventional superconductor and a noteworthy new member of the vanadium-based kagome material family. Ta2V3.1Si0.9 is an interesting kagome superconductor with a record-high critical temperature of 7.5 K for kagome metals at ambient pressure. Here, muon spin rotation measurements reveal an unusual paramagnetic shift in response to external magnetic fields and an exceptionally dilute superfluid density despite the high TC, signalling the unconventional nature of superconductivity.
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来源期刊
Communications Materials
Communications Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
12.10
自引率
1.30%
发文量
85
审稿时长
17 weeks
期刊介绍: Communications Materials, a selective open access journal within Nature Portfolio, is dedicated to publishing top-tier research, reviews, and commentary across all facets of materials science. The journal showcases significant advancements in specialized research areas, encompassing both fundamental and applied studies. Serving as an open access option for materials sciences, Communications Materials applies less stringent criteria for impact and significance compared to Nature-branded journals, including Nature Communications.
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