论文标题
电荷密度波不稳定性和压力诱导的超导性超导性。
Charge density wave instability and pressure-induced superconductivity in bulk 1T-NbS2
论文作者
论文摘要
在理论上,第一原理计算可以预测散装1T-NBS2的电荷密度波(CDW)不稳定性和压力诱导的超导性。我们揭示了CDW的不稳定性,以形成稳定的相应CDW顺序,从而导致SQART(13)*SQART(13)结构重建,并带有戴戴维星簇的结构重建。 CDW相具有一维金属行为,具有平面扁平频段特性,并与轨道密度波阶的共存主要由4D_(Z^2-R^2)轨道贡献,来自戴维德星团的内部NB原子。通过沿层堆叠方向将CCDW相的细胞加倍,可以在CDW相中实现金属 - 绝缘体过渡,以防同时考虑层间抗铁磁性和库仑相关效应。裸露的电子敏感性,声子宽度和电子 - 音波耦合计算表明,由于强烈的电子偶联相互作用,CDW的不稳定性是由软的声子模式驱动的。 CDW秩序可以通过压力抑制,并与超导性出现。我们的理论预测要求进行实验研究,以进一步阐明1T-NBS2的运输和磁力。此外,探索实现与批量1T-NBS2中超导性的CDW顺序的可能性也非常有趣。
Charge-density-wave (CDW) instability and pressure-induced superconductivity in bulk 1T-NbS2 are predicted theoretically by first-principles calculations. We reveal a CDW instability towards the formation of a stable commensurate CDW order, resulting in a sqart(13)*sqart(13) structural reconstruction featured with star-of-David clusters. The CDW phase exhibits one-dimensional metallic behavior with in-plane flat-band characteristics, and coexists with an orbital-density-wave order predominantly contributed by 4d_(z^2-r^2 ) orbital from the inner Nb atoms of the star-of-David cluster. By doubling the cell of the CCDW phase along the layer stacking direction, a metal-insulator transition may be realized in the CDW phase in case the interlayer antiferromagnetic ordering and Coulomb correlation effect have been considered simultaneously. Bare electron susceptibility, phonon linewidth and electron-phonon coupling calculations suggest that the CDW instability is driven by softened phonon modes due to the strong electron-phonon coupling interactions. CDW order can be suppressed by pressure, concomitant with appearance of superconductivity. Our theoretical predictions call for experimental investigations to further clarify the transport and magnetic properties of 1T-NbS2. Furthermore, it would also be very interesting to explore the possibility to realize the CDW order coexisting with the superconductivity in bulk 1T-NbS2.