论文标题
单乐队从单层NBSE $ _2 $中的库仑相互作用的两个乐队超导性
Two bands Ising superconductivity from Coulomb interactions in monolayer NbSe$_2$
论文作者
论文摘要
单层过渡金属二分法中超导性的性质仍然是争论的对象。已经有人争辩说,排斥的库仑相互作用,再加上$ k $,$ k'$ valleys和$γ$点附近的不相交费米表面,可能会导致单层NBSE NBSE $ _2 $中的超导力量。在这里,我们演示了NBSE $ _2 $中超导性的两个频段性质。它源于排斥远距离省的竞争以及伊斯丁自旋轨道耦合的竞争。两个不同的超导间隙,每个自旋轨道分开带,由S波和F波组件的混合物组成。它们的不同幅度是由于Fermi水平的两个频段的状态的正常密度不同。使用显微镜多频道BCS方法,我们得出并自愿求解差距方程,证明了非平凡溶液在现实的参数范围内的稳定性。我们发现间隙的温度依赖性和临界面积的普遍行为与现有的各种实验数据一致。
The nature of superconductivity in monolayer transition metal dichalcogenides is still an object of debate. It has already been argued that repulsive Coulomb interactions, combined with the disjoint Fermi surfaces around the $K$, $K'$ valleys and at the $Γ$ point, can lead to superconducting instabilities in monolayer NbSe$_2$. Here, we demonstrate the two bands nature of superconductivity in NbSe$_2$. It arises from the competition of repulsive long range intravalley and short range intervalley interactions together with Ising spin-orbit coupling. The two distinct superconducting gaps, one for each spin-orbit split band, consist of a mixture of s-wave and f-wave components. Their different amplitudes are due to different normal densities of states of the two bands at the Fermi level. Using a microscopic multiband BCS approach, we derive and self-consistently solve the gap equation, demonstrating the stability of nontrivial solutions in a realistic parameter range. We find a universal behavior of the temperature dependence of the gaps and of the critical in-plane field which is consistent with various sets of existing experimental data.