论文标题
铁 - 苏烯化超导体的列态状态中的异常光谱转移
Anomalous spectral weight transfer in the nematic state of iron-selenide superconductor
论文作者
论文摘要
列中相与基于铁的超导体的高-TC超导率紧密相互交织。它的机制与超导性的配对机制密切相关,仍然存在争议。因此,列明阶段中电子状态如何重建的全面表征至关重要。但是,大多数实验仅着眼于带分散的重建。到目前为止,尚未对电子状态的另一个重要特征,光谱重量进行研究。在这里,我们使用角度分辨的光发射光谱和静脉内detwinning技术研究了FESE $ _ {0.9} $ s $ _ {0.9} $ s $ _ {0.1} $的光谱转移。在布里渊区的角落有两个椭圆电子口袋彼此重叠。我们发现,冷却后,一个电子口袋会失去光谱重量并逐渐消失,而另一个电子口袋会增加光谱的重量并发音。我们的结果表明,电子状态的对称破坏不仅由各向异性带分散体,而且还表现出光谱重量的带选择性调制。我们的观察结果完成了我们对列马电子状态的理解,并在理论模型上施加了强烈的限制。它进一步提供了至关重要的线索,以了解铁羟酯超导体中的差距各向异性和轨道选择配对。
Nematic phase intertwines closely with high-Tc superconductivity in iron-based superconductors. Its mechanism, which is closely related to the pairing mechanism of superconductivity, still remains controversial. Comprehensive characterization of how the electronic state reconstructs in the nematic phase is thus crucial. However, most experiments focus only on the reconstruction of band dispersions. Another important characteristic of electronic state, the spectral weight, has not been studied in details so far. Here, we studied the spectral weight transfer in the nematic phase of FeSe$_{0.9}$S$_{0.1}$ using angle-resolved photoemission spectroscopy and in-situ detwinning technique. There are two elliptical electron pockets overlapping with each other orthogonally at the Brillouin zone corner. We found that, upon cooling, one electron pocket loses spectral weight and fades away, while the other electron pocket gains spectral weight and becomes pronounced. Our results show that the symmetry breaking of electronic state is manifested by not only the anisotropic band dispersion but also the band-selective modulation of spectral weight. Our observation completes our understanding of the nematic electronic state, and put strong constraints on the theoretical models. It further provide crucial clues to understand the gap anisotropy and orbital-selective pairing in iron-selenide superconductors.