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具有隐藏磁性的少层6R-TaS中的向列伊辛超导性

Nematic Ising superconductivity with hidden magnetism in few-layer 6R-TaS.

作者信息

Liu Shao-Bo, Tian Congkuan, Fang Yuqiang, Rong Hongtao, Cao Lu, Wei Xinjian, Cui Hang, Chen Mantang, Chen Di, Song Yuanjun, Cui Jian, Li Jiankun, Guan Shuyue, Jia Shuang, Chen Chaoyu, He Wenyu, Huang Fuqiang, Jiang Yuhang, Mao Jinhai, Xie X C, Law Kam Tuen, Chen Jian-Hao

机构信息

International Center for Quantum Materials, School of Physics, Peking University, Beijing, China.

Beijing Academy of Quantum Information Sciences, Beijing, China.

出版信息

Nat Commun. 2024 Aug 31;15(1):7569. doi: 10.1038/s41467-024-51631-z.

Abstract

In van der Waals heterostructures (vdWHs), the manipulation of interlayer stacking/coupling allows for the construction of customizable quantum systems exhibiting exotic physics. An illustrative example is the diverse range of states of matter achieved through varying the proximity coupling between two-dimensional (2D) quantum spin liquid (QSL) and superconductors within the TaS family. This study presents a demonstration of the intertwined physics of spontaneous rotational symmetry breaking, hidden magnetism, and Ising superconductivity (SC) in the three-fold rotationally symmetric, non-magnetic natural vdWHs 6R-TaS. A distinctive phase emerges in 6R-TaS below a characteristic temperature (T) of approximately 30 K, which is characterized by a remarkable set of features, including a giant extrinsic anomalous Hall effect (AHE), Kondo screening, magnetic field-tunable thermal hysteresis, and nematic magneto-resistance. At lower temperatures, a coexistence of nematicity and Kondo screening with Ising superconductivity is observed, providing compelling evidence of hidden magnetism within a superconductor. This research not only sheds light on unexpected emergent physics resulting from the coupling of itinerant electrons and localized/correlated electrons in natural vdWHs but also emphasizes the potential for tailoring exotic quantum states through the manipulation of interlayer interactions.

摘要

在范德华异质结构(vdWHs)中,通过控制层间堆叠/耦合,可以构建出展现奇异物理特性的可定制量子系统。一个典型的例子是通过改变TaS族中二维(2D)量子自旋液体(QSL)与超导体之间的近邻耦合,实现了多种物态。本研究展示了在具有三重旋转对称性的非磁性天然vdWH 6R-TaS中,自发旋转对称性破缺、隐藏磁性和伊辛超导(SC)的交织物理现象。在6R-TaS中,低于约30 K的特征温度(T)时出现了一个独特的相,其特征包括显著的一组特性,如巨大的外在反常霍尔效应(AHE)、近藤屏蔽、磁场可调的热滞回线和向列型磁电阻。在较低温度下,观察到向列性和近藤屏蔽与伊辛超导共存,这为超导体中隐藏磁性提供了有力证据。这项研究不仅揭示了天然vdWHs中巡游电子与局域/关联电子耦合产生的意外涌现物理现象,还强调了通过操纵层间相互作用来定制奇异量子态的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a33/11365993/f0859ce1877a/41467_2024_51631_Fig1_HTML.jpg

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