论文标题

SR2RUO4的三维模型中的领先超导不稳定

Leading superconducting instabilities in three-dimensional models for Sr2RuO4

论文作者

Rømer, Astrid T., Maier, T. A., Kreisel, Andreas, Hirschfeld, P. J., Andersen, Brian M.

论文摘要

超过二十年来,超导体SR2RUO4一直是引起人们巨大关注的主题,但直到现在,尚未确定其订单参数的形式。由于开创性的NMR实验表明,这对具有主要的自旋字体,因此注意力集中在时间反转对称性破坏$ S $ - ,$ d $ - 和$ g $ - 和$ g $ - 一维(1D)的不可及表示的线性组合上。但是,也提出了$ d_ {xz}+id_ {yz} $的形式的状态。假设配对是由波动交换机制驱动的,包括对各种超导候选状态的稳定性的系统研究,包括逼真的三维费米表面,对局部和非本地旋转轨道耦合的全面处理,以及广泛的相互作用参数$,u,u,j,u',u',j'$。发现领先的超导率不稳定性表现出节点均匀$ a_ {1g}(s')$或$ b_ {1g}(d_ {x^x^2-y^2})$对称性,类似于二维型号的二维coulomb互动中的发现,这些结果倾向于二维型号,这些模型倾向于$ d _^$ d_ $ d_^$ d_^$ d_^$ d_^$ d_}在所谓的Hund耦合平均场配对场景中,$ e_g(d_ {xz}/d_ {yz})$可以稳定在大的$ j $中,并且在所有其他案例中,在所有其他案例中都可以将其他超级限制的交换均置于更大的范围时,并且在所有情况下都可以将旋转轨道耦合的特定形式稳定下来。内核。此外,我们计算相关超导候选阶段中的自旋敏感性,并与最近的中子散射和NMR骑士移位测量值相比。

The superconductor Sr2RuO4 has been the subject of enormous interest over more than two decades, but until now the form of its order parameter has not been determined. Since groundbreaking NMR experiments revealed that the pairs are of dominant spin-singlet character, attention has focused on time-reversal symmetry breaking linear combinations of $s$-, $d$- and $g$-wave one-dimensional (1D) irreducible representations. However, a state of the form $d_{xz}+id_{yz}$ has also been proposed. We present a systematic study of the stability of various superconducting candidate states, assuming that pairing is driven by the fluctuation exchange mechanism, including a realistic three-dimensional Fermi surface, full treatment of both local and non-local spin-orbit couplings, and a wide range of interaction parameters $U,J,U',J'$. The leading superconducting instabilities are found to exhibit nodal even-parity $A_{1g} (s')$ or $B_{1g} (d_{x^2-y^2})$ symmetries, similar to the findings in two-dimensional models without longer-range Coulomb interaction which tends to favor $d_{xy}$ over $d_{x^2-y^2}$. Within the so-called Hund's coupling mean-field pairing scenario, the $E_g (d_{xz}/d_{yz})$ solution can be stabilized for large $J$ and specific forms of the spin-orbit coupling, but for all cases studied here the eigenvalues of other superconducting solutions are significantly larger when the full fluctuation exchange vertex is included in the pairing kernel. Additionally, we compute the spin susceptibility in relevant superconducting candidate phases and compare to recent neutron scattering and NMR Knight shift measurements.

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