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首页> 外文期刊>Science Advances >Chiral superconductivity in the alternate stacking compound 4Hb-TaS2
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Chiral superconductivity in the alternate stacking compound 4Hb-TaS2

机译:交替堆叠化合物4HB-TAS2中的手性超导

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摘要

Van der Waals materials offer unprecedented control of electronic properties via stacking of different types of two-dimensional materials. A fascinating frontier, largely unexplored, is the stacking of strongly correlated phases of matter. We study 4Hb-TaSsub2/sub, which naturally realizes an alternating stacking of 1T-TaSsub2/sub and 1H-TaSsub2/sub structures. The former is a well-known Mott insulator, which has recently been proposed to host a gapless spin-liquid ground state. The latter is a superconductor known to also host a competing charge density wave state. This raises the question of how these two components affect each other when stacked together. We find a superconductor with a T subc/sub of 2.7 Kelvin and anomalous properties, of which the most notable one is a signature of time-reversal symmetry breaking, abruptly appearing at the superconducting transition. This observation is consistent with a chiral superconducting state.
机译:Van der Waals材料通过堆叠不同类型的二维材料,提供了前所未有的电子特性控制。一个迷人的边境,在很大程度上是未开发的,是堆叠有关的强烈相关阶段。我们研究4HB-TAS 2 ,其自然地实现了1T-TAS 2 和1H-TAS 2 结构的交替堆叠。前者是众所周知的Mott绝缘体,最近被提出举办无间隙旋转液体地位。后者是已知的超导体,也是托管竞争电荷密度波状态。这提出了在堆叠在一起时,这两个组件如何相互影响。我们发现具有2.7个开尔文和异常性质的T c 的超导体,其中最值得注意的是时间反转对称断裂的特征,突然出现在超导转变。该观察结果与手性超导状态一致。

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