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钯铋中的多相超导性。

Multiphase superconductivity in PdBi.

作者信息

Powell Lewis, Kuang Wenjun, Hawkins-Pottier Gabriel, Jalil Rashid, Birkbeck John, Jiang Ziyi, Kim Minsoo, Zou Yichao, Komrakova Sofiia, Haigh Sarah, Timokhin Ivan, Balakrishnan Geetha, Geim Andre K, Walet Niels, Principi Alessandro, Grigorieva Irina V

机构信息

Department of Physics and Astronomy, University of Manchester, Manchester, UK.

National Innovation Institute of Defense Technology, AMS, Beijing, China.

出版信息

Nat Commun. 2025 Jan 2;16(1):291. doi: 10.1038/s41467-024-54867-x.

Abstract

Unconventional superconductivity, where electron pairing does not involve electron-phonon interactions, is often attributed to magnetic correlations in a material. Well known examples include high-T cuprates and uranium-based heavy fermion superconductors. Less explored are unconventional superconductors with strong spin-orbit coupling, where interactions between spin-polarised electrons and external magnetic field can result in multiple superconducting phases and field-induced transitions between them, a rare phenomenon in the superconducting state. Here we report a magnetic-field driven phase transition in β-PdBi, a layered non-magnetic superconductor. Our tunnelling spectroscopy on thin PdBi monocrystals incorporated in planar superconductor-insulator-normal metal junctions reveals a marked discontinuity in the superconducting properties with increasing in-plane field, which is consistent with a transition from conventional (s-wave) to nodal pairing. Our theoretical analysis suggests that this phase transition may arise from spin polarisation and spin-momentum locking caused by locally broken inversion symmetry, with p-wave pairing becoming energetically favourable in high fields. Our findings also reconcile earlier predictions of unconventional multigap superconductivity in β-PdBi with previous experiments where only a single s-wave gap could be detected.

摘要

非常规超导性中,电子配对不涉及电子 - 声子相互作用,通常归因于材料中的磁关联。著名的例子包括高温铜酸盐和铀基重费米子超导体。对具有强自旋 - 轨道耦合的非常规超导体的探索较少,在这种超导体中,自旋极化电子与外部磁场之间的相互作用会导致多个超导相以及它们之间的场致转变,这在超导态中是一种罕见现象。在此,我们报道了层状非磁性超导体β - PdBi中的磁场驱动相变。我们对包含在平面超导体 - 绝缘体 - 正常金属结中的薄PdBi单晶进行的隧穿光谱研究表明,随着面内磁场增加,超导特性出现明显的不连续性,这与从传统(s波)到节点配对的转变一致。我们的理论分析表明,这种相变可能源于局部破缺的反演对称性引起的自旋极化和自旋 - 动量锁定,在高场中p波配对在能量上变得有利。我们的发现还使β - PdBi中非常规多能隙超导性的早期预测与之前仅能检测到单个s波能隙的实验结果相协调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f05/11696495/15af78e01d17/41467_2024_54867_Fig1_HTML.jpg

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