论文标题

部分可观测时空混沌系统的无模型预测

Twists and turns of superconductivity from a repulsive dynamical interaction

论文作者

Pimenov, Dimitri, Chubukov, Andrey V.

论文摘要

我们回顾了在理解空间均匀的$ s $ - 波超导率方面的最新理论进展,该超导能力源于费米亚 - 特里米昂的相互作用,该相互作用在Matsubara轴上是真实的,但确实取决于传递的频率。这种情况存在,例如,对于具有筛选库仑和智障的电子 - phonon相互作用的系统。我们表明,尽管排斥,但在一定范围的系统参数中仍然可以使用超导性。但是,在$ t = 0 $下,Matsubara轴上的间隙功能,$δ(ω_m)$,必须通过零并至少一次更改符号。这些$δ(ω_m)$的零在动态涡旋方面具有拓扑解释,并且它们的存在对沿实际频率轴的间隙函数的变化施加了限制,可以从ARPE和其他测量结果中提取出间隙函数的变化。我们讨论当排斥力太强时,超导性如何消失,并获得一条关键线,该线路在$ t = 0 $下在量子关键点以超导性终止。我们表明,差距函数接近这一点的行为是高度不平凡的。特别是,无限的小$δ(ω_m)$包含一个单数$δ-$函数件$ω_mΔ(ω_m)$。我们认为,接近临界点的超导性可能是一种混合状态,具有频率和奇数差距成分。

We review recent theoretical progress in understanding spatially uniform $s$-wave superconductivity which arises from a fermion-fermion interaction, which is repulsive on the Matsubara axis, where it is real, but does depend on the transferred frequency. Such a situation holds, e.g., for systems with a screened Coulomb and retarded electron-phonon interaction. We show that despite repulsion, superconductivity is possible in a certain range of system parameters. However, at $T=0$ the gap function on the Matsubara axis, $Δ(ω_m)$, must pass through zero and change sign at least once. These zeros of $Δ(ω_m)$ have a topological interpretation in terms of dynamical vortices, and their presence imposes a constraint on the variation of the phase of the gap function along the real frequency axis, which can potentially be extracted from ARPES and other measurements. We discuss how superconductivity vanishes when the repulsion becomes too strong, and obtain a critical line which terminates at $T=0$ at a quantum-critical point for superconductivity. We show that the behavior of the gap function near this point is highly non-trivial. In particular, an infinitesimally small $Δ(ω_m)$ contains a singular $δ-$function piece $ω_m δ(ω_m)$. We argue that near the critical point superconductivity may be a mixed state with even-frequency and odd-frequency gap components.

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