Jiang Weilun, Liu Yuzhi, Klein Avraham, Wang Yuxuan, Sun Kai, Chubukov Andrey V, Meng Zi Yang
Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
School of Physical Sciences, University of Chinese Academy of Sciences, Beijing, 100190, China.
Nat Commun. 2022 May 12;13(1):2655. doi: 10.1038/s41467-022-30302-x.
The origin of the pseudogap behavior, found in many high-T superconductors, remains one of the greatest puzzles in condensed matter physics. One possible mechanism is fermionic incoherence, which near a quantum critical point allows pair formation but suppresses superconductivity. Employing quantum Monte Carlo simulations of a model of itinerant fermions coupled to ferromagnetic spin fluctuations, represented by a quantum rotor, we report numerical evidence of pseudogap behavior, emerging from pairing fluctuations in a quantum-critical non-Fermi liquid. Specifically, we observe enhanced pairing fluctuations and a partial gap opening in the fermionic spectrum. However, the system remains non-superconducting until reaching a much lower temperature. In the pseudogap regime the system displays a "gap-filling" rather than "gap-closing" behavior, similar to the one observed in cuprate superconductors. Our results present direct evidence of the pseudogap state, driven by superconducting fluctuations.
在许多高温超导体中发现的赝能隙行为的起源,仍然是凝聚态物理中最大的谜题之一。一种可能的机制是费米子非相干性,在量子临界点附近,它允许库珀对形成,但抑制超导性。通过对由量子转子表示的与铁磁自旋涨落耦合的巡游费米子模型进行量子蒙特卡罗模拟,我们报告了赝能隙行为的数值证据,该行为源于量子临界非费米液体中的配对涨落。具体而言,我们观察到配对涨落增强以及费米子能谱中出现部分能隙打开。然而,该系统在达到低得多的温度之前仍不超导。在赝能隙区域,系统表现出“能隙填充”而非“能隙闭合”行为,类似于在铜酸盐超导体中观察到的行为。我们的结果提供了由超导涨落驱动的赝能隙态的直接证据。