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铜酸盐超导体赝能隙与超导相之间配对顺序的演变

Evolution of Pairing Orders between Pseudogap and Superconducting Phases of Cuprate Superconductors.

作者信息

Tu Wei-Lin, Lee Ting-Kuo

机构信息

Department of Physics, National Taiwan University, Daan, Taipei, 10617, Taiwan.

Laboratoire de Physique Théorique, IRSAMC, Université de Toulouse, CNRS, UPS, Toulouse, France.

出版信息

Sci Rep. 2019 Feb 8;9(1):1719. doi: 10.1038/s41598-018-38288-7.

Abstract

One of the most puzzling problems of high temperature cuprate superconductor is the pseudogap phase (PG) at temperatures above the superconducting transition temperature in the underdoped regime. The PG phase is found by the angle-resolved photoemission spectra (ARPES) to have a gap at some regions in momentum space and a fraction of Fermi surface remained, known as Fermi arcs. The arc turns into a d-wave SC gap with a node below the SC transition temperature. Here, by studying a strongly correlated model at low temperatures, we obtained a phase characterized by two kinds of pairing order parameters with the total momentum of the Cooper pair to be zero and finite. The finite momentum pairing is accompanied with a spatial modulation of pairing order, i.e. a pair density wave (PDW). These PDW phases are intertwined with modulations of charge density and intra-unit cell form factors. The coexistence of the two different pairing orders provides the unique two-gaps like spectra observed by ARPES for superconducting cuprates. As temperature raises, the zero-momentum pairing order vanishes while the finite momentum pairing orders are kept, thus Fermi arcs are realized. The calculated quasiparticle spectra have the similar doping and temperature dependence as reported by ARPES and scanning tunneling spectroscopy (STS). The consequence of breaking symmetry between x and y due to the unidirectional PDW and the possibility to probe such a PDW state in the PG phase is discussed.

摘要

高温铜酸盐超导体最令人困惑的问题之一是欠掺杂区域中超导转变温度以上的赝能隙相(PG)。通过角分辨光电子能谱(ARPES)发现,PG相在动量空间的某些区域存在能隙,并且费米面的一部分得以保留,即所谓的费米弧。在超导转变温度以下,该弧转变为具有节点的d波超导能隙。在此,通过研究低温下的强关联模型,我们得到了一个由两种配对序参量表征的相,其中库珀对的总动量为零和有限值。有限动量配对伴随着配对序的空间调制,即对密度波(PDW)。这些PDW相与电荷密度和晶胞内形状因子的调制相互交织。两种不同配对序的共存为超导铜酸盐提供了ARPES所观测到的独特的类似双能隙光谱。随着温度升高,零动量配对序消失,而有限动量配对序得以保留,从而实现了费米弧。计算得到的准粒子光谱具有与ARPES和扫描隧道谱(STS)报道的类似的掺杂和温度依赖性。讨论了由于单向PDW导致的x和y之间对称性破缺的结果以及在PG相中探测这种PDW态的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aeb8/6368576/8b2505273c3d/41598_2018_38288_Fig1_HTML.jpg

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