论文标题
在铜塔超导体中通过狭窄的局部列表配对的真实空间配对
Real-space pairing through a confined local nematic state in cuprate superconductors
论文作者
论文摘要
高温超导性的配对机制被认为是我们现在面临的最具挑战性的问题之一。核心问题是关于库珀对的形成方式。有很多关于配对方式的图片,其中一些图像通过强相关效应假定了当地的电荷自由配对。在这里,我们报告了对极为低落的BI2SR2-XLAXCUO6-DELTA上旋转分辨的隧道测量值。我们的数据表明,当孔被掺入系统中时,抗磁磁性秩序将被破坏,并填充电荷传输间隙的一定密度(DOS),最大约为200 meV。因此,具有4A0x4A0基本底座的电子结构逐渐出现,它们变得更加人口稠密,而不是进一步的孔掺杂。在每个plaquette的中心部分,有三个单向条(沿着Cu-O键)在约 +-25 MeV处的相干状DOS的增强峰启发,并且在氧气位点的强度特别明显。我们第一次揭示了这些相关状态的内部列表模式,该状态表现出前体间隙以实现超导性的特征。我们认为,在一个4A0x4A0 plaquette中,这种限制的nematic状态自然构成了局部配对格式。我们的作品为铜土超导体中的长期配对机构的长期难题提供了新的光芒。
The pairing mechanism of high temperature superconductivity in cuprates is regarded as one of the most challenging issues that we are facing now. The core issue is about how the Cooper pairs are formed. There are plenty pictures concerning the pairing manner, and some of them postulate local pairing of charge freedom through the strong correlation effect. Here we report the spin resolved tunnelling measurements on extremely underdoped Bi2Sr2-xLaxCuO6-delta. Our data reveal that, when holes are doped into the system, the antiferromagnetic order is destroyed together with the filling up of the charge transfer gap by some density of states (DOS) with a maximum at about 200 meV. Consequently, an electronic structure with 4a0x4a0 basic plaquettes gradually emerges, and they become more populated versus further hole doping. In the central part of each plaquette, there are three unidirectional bars (along the Cu-O bond) enlightened by the enhanced peaks of coherence-like DOS at about +-25 meV, and the intensity is especially pronounced at oxygen sites. For the first time, we reveal an internal nematic pattern of these pairing related states which exhibit a feature of precursor gap for superconductivity. We argue that this confined nematic state within one 4a0x4a0 plaquette constitutes naturally the local pairing format. Our work shed new light in unraveling the longstanding puzzle of pairing mechanism in cuprate superconductors.