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Superconductivity in Weyl semimetal candidate MoTe2

机译:Weyl半金属候选MoTe2中的超导性

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摘要

Transition metal dichalcogenides have attracted research interest over the last few decades due to their interesting structural chemistry, unusual electronic properties, rich intercalation chemistry and wide spectrum of potential applications. Despite the fact that the majority of related research focuses on semiconducting transition-metal dichalcogenides (for example, MoS2), recently discovered unexpected properties of WTe2 are provoking strong interest in semimetallic transition metal dichalcogenides featuring large magnetoresistance, pressure-driven superconductivity and Weyl semimetal states. We investigate the sister compound of WTe2, MoTe2, predicted to be a Weyl semimetal and a quantum spin Hall insulator in bulk and monolayer form, respectively. We find that bulk MoTe2 exhibits superconductivity with a transition temperature of 0.10 K. Application of external pressure dramatically enhances the transition temperature up to maximum value of 8.2 K at 11.7 GPa. The observed dome-shaped superconductivity phase diagram provides insights into the interplay between superconductivity and topological physics.
机译:在过去的几十年中,过渡金属二卤化物因其有趣的结构化学,异常的电子性能,丰富的插层化学以及广泛的潜在应用而吸引了研究兴趣。尽管大多数相关研究都集中在半导体过渡金属二卤化物(例如MoS2)上,但最近发现的WTe2出乎意料的特性引起了对具有大磁阻,压力驱动超导电性和Weyl半金属态的半金属过渡金属二卤化物的强烈兴趣。 。我们研究了WTe2的姊妹化合物MoTe2,它们分别是块状和单层形式的Weyl半金属和量子自旋霍尔绝缘体。我们发现,块状MoTe2在过渡温度为0.10 K时表现出超导性,施加外部压力可显着提高过渡温度,在11.7 GPa时达到8.2 K的最大值。观察到的圆顶形超导相图提供了超导与拓扑物理之间相互作用的见解。

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