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Strong-coupling superconductivity induced by calcium intercalation in bilayer transition-metal dichalcogenides

机译:钙嵌入双层过渡金属二卤化物中诱导的强耦合超导

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摘要

We theoretically investigate the possibility of achieving a superconducting state in transition-metal dichalcogenide bilayers through intercalation, a process previously and widely used to achieve metallization and superconducting states in novel superconductors. For the Ca-intercalated bilayers MoS2 and WS2, we find that the superconducting state is characterized by an electron-phonon coupling constant larger than 1.0 and a superconducting critical temperature of 13.3 and 9.3 K, respectively. These results are superior to other predicted or experimentally observed two-dimensional conventional superconductors and suggest that the investigated materials may be good candidates for nanoscale superconductors. More interestingly, we proved that the obtained thermodynamic properties go beyond the predictions of the mean-field Bardeen-Cooper-Schrieffer approximation and that the calculations conducted within the framework of the strong-coupling Eliashberg theory should be treated as those that yield quantitative results.
机译:我们从理论上研究了通过插层在过渡金属二硫化碳双层中实现超导状态的可能性,该过程是先前广泛用于在新型超导体中实现金属化和超导状态的过程。对于插入了Ca的双层MoS2和WS2,我们发现超导状态的特征在于电子声子耦合常数大于1.0,超导临界温度分别为13.3和9.3K。这些结果优于其他预测或实验观察到的二维常规超导体,并表明所研究的材料可能是纳米级超导体的良好候选者。更有趣的是,我们证明了所获得的热力学性质超出了平均电场Bardeen-Cooper-Schrieffer逼近的预测,并且在强耦合Eliashberg理论框架内进行的计算应视为产生定量结果的计算。

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