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具有天然块状范德华异质结构的6R-TaS₂中压力诱导的超导非单调演化

Pressure Induced Nonmonotonic Evolution of Superconductivity in 6R-TaS_{2} with a Natural Bulk Van der Waals Heterostructure.

作者信息

Wang Shaopeng, Han Yuyan, Sun Sutao, Wang Shuyang, An Chao, Chen Chunhua, Zhang Lili, Zhou Yonghui, Zhou Jian, Yang Zhaorong

机构信息

Anhui Key Laboratory of Low-energy Quantum Materials and Devices, <a href="https://ror.org/01gh88804">High Magnetic Field Laboratory</a>, HFIPS, Chinese Academy of Sciences, Hefei 230031, China.

Science Island Branch of Graduate School, <a href="https://ror.org/04c4dkn09">University of Science and Technology of China</a>, Hefei 230026, China.

出版信息

Phys Rev Lett. 2024 Aug 2;133(5):056001. doi: 10.1103/PhysRevLett.133.056001.

Abstract

The natural bulk Van der Waals heterostructure compound 6R-TaS_{2} consists of alternate stacking 1T- and 1H-TaS_{2} monolayers, creating a unique system that incorporates charge-density-wave (CDW) order and superconductivity (SC) in distinct monolayers. Here, after confirming that the 2D nature of the lattice is preserved up to 8 GPa in 6R-TaS_{2}, we documented an unusual evolution of CDW and SC by conducting high-pressure electronic transport measurements. Upon compression, we observe a gradual suppression of CDW within the 1T layers, while the SC exhibits a dome-shaped behavior that terminates at a critical pressure P_{c} around 2.9 GPa. By taking account of the fact that the substantial suppression of SC is concomitant with the complete collapse of CDW order at P_{c}, we argue that the 6R-TaS_{2} behaves like a stack of Josephson junctions and thus the suppressed superconductivity can be attributed to the weakening of Josephson coupling associated with the presence of CDW fluctuations in the 1T layers. Furthermore, the SC reversely enhances above P_{c}, implying the development of emergent superconductivity in the 1T layers after the melting of T-layer CDW orders. These results show that the 6R-TaS_{2} not only provides a promising platform to explore emergent phenomena but also serves as a model system to study the complex interactions between competing electronic states.

摘要

天然块状范德华异质结构化合物6R-TaS₂由交替堆叠的1T-和1H-TaS₂单层组成,形成了一个独特的体系,在不同的单层中纳入了电荷密度波(CDW)序和超导性(SC)。在此,在确认6R-TaS₂中晶格的二维性质在高达8吉帕的压力下得以保留后,我们通过进行高压电子输运测量记录了CDW和SC的异常演变。在压缩过程中,我们观察到1T层内CDW逐渐受到抑制,而SC呈现出穹顶状行为,并在约2.9吉帕的临界压力Pₑ处终止。考虑到在Pₑ处SC的显著抑制与CDW序的完全崩溃同时发生,我们认为6R-TaS₂的行为类似于约瑟夫森结的堆叠,因此被抑制的超导性可归因于与1T层中CDW涨落的存在相关的约瑟夫森耦合的减弱。此外,SC在Pₑ以上反向增强,这意味着在T层CDW序熔化后1T层中出现了超导性。这些结果表明,6R-TaS₂不仅为探索新兴现象提供了一个有前景的平台,而且还作为一个模型系统来研究竞争电子态之间的复杂相互作用。

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