论文标题
与自旋轨道耦合相关的多轨系统中的超导性:均匀和奇数配对的共存和扁桃纹酸腹膜的情况
Superconductivity in Correlated Multi-Orbital Systems with Spin-Orbit Coupling: Coexistence of Even- and Odd-Frequency Pairing and the Case of Strontium Ruthenate
论文作者
论文摘要
孔丁酸锶的超导顺序参数是一个持久难题的中心,呼吁进行理论研究,其中包括旋转轨道耦合的很少有思想的影响以及阶参数的频率依赖性。在这里,我们概括了由自旋和电荷波动介导的超导性的频率依赖性理论,包括在多轨道系统中包括自旋轨道耦合,我们使用自旋 - 偏见 - 偏见$ spot $ quast $量子$量子$量子数,组理论,组理论和相数平面中的相位分布来表征超导状态。我们得出了一种假蛋白公式,该公式将正常状态以eliiashberg方程的伪seplypin扇区映射到假蛋白 - 二角形。从现实的密度功能理论正常状态开始,获得了松酸盐的可能的超导顺序参数。我们发现,自旋轨道耦合导致旋转和轨道量子数的无处不在纠缠,以及偶数和奇数之间相关性之间的显着混合。我们提出了一个从伪赋 - 轨道基础上领先的和超级对称对称性的温度依赖性获得的相图。领先的假偶像对称性之间的偶然退化,B $ _ {1G}^+$和A $ _ {2G}^ - $,可以解决明显的实验矛盾。
The superconducting order parameter of strontium ruthenate is the center of a lasting puzzle calling for theoretical studies that include the seldom-considered effects of spin-orbit coupling and the frequency-dependence of the order parameters. Here we generalize the frequency-dependent theory of superconductivity mediated by spin and charge fluctuations to include spin-orbit coupling in multi-orbital systems and we characterize the superconducting states using the spin-parity-orbital-time $SPOT$ quantum numbers, group theory, and phase distributions in the complex plane. We derive a pseudospin formulation that maps the inter-pseudospin sector of the normal state Eliashberg equation to a pseudospin-diagonal one. Possible superconducting order parameters for strontium ruthenate are obtained starting from a realistic density-functional-theory normal state. We find that spin-orbit coupling leads to ubiquitous entanglement of spin and orbital quantum numbers, along with notable mixing between even- and odd-frequency correlations. We propose a phase diagram obtained from the temperature dependence of the leading and subleading symmetries in the pseudospin-orbital basis. An accidental degeneracy between leading inter-pseudospin symmetries in strontium ruthenate, B$_{1g}^+$ and A$_{2g}^-$, could resolve apparent experimental contradictions.