Department of Physics, University of Florida, Gainesville, FL, USA.
Department of Physics and Astronomy, Rice Center for Quantum Materials, Rice University, Houston, TX, 77005, USA.
Nat Commun. 2023 Jun 1;14(1):3181. doi: 10.1038/s41467-023-38956-x.
In weakly coupled BCS superconductors, only electrons within a tiny energy window around the Fermi energy, E, form Cooper pairs. This may not be the case in strong coupling superconductors such as cuprates, FeSe, SrTiO or cold atom condensates where the pairing scale, E, becomes comparable or even larger than E. In cuprates, for example, a plausible candidate for the pseudogap state at low doping is a fluctuating pair density wave, but no microscopic model has yet been found which supports such a state. In this work, we write an analytically solvable model to examine pairing phases in the strongly coupled regime and in the presence of anisotropic interactions. Already for moderate coupling we find an unusual finite temperature phase, below an instability temperature T, where local pair correlations have non-zero center-of-mass momentum but lack long-range order. At low temperature, this fluctuating pair density wave can condense either to a uniform d-wave superconductor or the widely postulated pair-density wave phase depending on the interaction strength. Our minimal model offers a unified framework to understand the emergence of both fluctuating and long range pair density waves in realistic systems.
在弱耦合 BCS 超导体中,只有费米能附近的一个微小能量窗口内的电子形成库珀对。在强耦合超导体中,如铜酸盐、FeSe、SrTiO 或冷原子凝聚体中,情况可能并非如此,因为配对尺度 E 变得可与费米能相比拟,甚至更大。例如,在低掺杂的赝能隙态中,一种合理的候选者是波动的对密度波,但尚未找到支持这种状态的微观模型。在这项工作中,我们提出了一个可解析求解的模型,以研究强耦合区和各向异性相互作用存在时的配对相。即使在中等耦合的情况下,我们也发现了一种不寻常的有限温度相,低于不稳定性温度 T,其中局域对关联具有非零的质心动量,但缺乏长程有序。在低温下,这种波动的对密度波可以凝聚成均匀的 d 波超导相,或者凝聚成广泛假设的对密度波相,这取决于相互作用强度。我们的最小模型为理解实际系统中波动和长程对密度波的出现提供了一个统一的框架。