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Single reconstructed Fermi surface pocket in an underdoped single-layer cuprate superconductor

机译:掺杂不足的单层铜酸盐超导体中的单个重构费米表面口袋

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The observation of a reconstructed Fermi surface via quantum oscillations in hole-doped cuprates opened a path towards identifying broken symmetry states in the pseudogap regime. However, such an identification has remained inconclusive due to the multi-frequency quantum oscillation spectra and complications accounting for bilayer effects in most studies. We overcome these impediments with high-resolution measurements on the structurally simpler cuprate HgBa2CuO4+ δ (Hg1201), which features one CuO2 plane per primitive unit cell. We find only a single oscillatory component with no signatures of magnetic breakdown tunnelling to additional orbits. Therefore, the Fermi surface comprises a single quasi-two-dimensional pocket. Quantitative modelling of these results indicates that a biaxial charge density wave within each CuO2 plane is responsible for the reconstruction and rules out criss-crossed charge stripes between layers as a viable alternative in Hg1201. Lastly, we determine that the characteristic gap between reconstructed pockets is a significant fraction of the pseudogap energy.
机译:通过掺杂孔的铜酸盐中的量子振荡对重建的费米表面的观察为伪间隙制度中确定破碎的对称状态开辟了道路。但是,由于多数研究中由于存在多频量子振荡谱和复杂性而导致双层效应,因此这种鉴定仍然没有定论。我们通过对结构简单的铜酸盐HgBa 2 CuO 4+δ(Hg1201)进行高分辨率测量来克服这些障碍,该特征具有一个CuO 2 每个基本单位单元的平面。我们发现只有一个振荡分量,没有磁击穿隧穿到其他轨道的信号。因此,费米表面包括单个准二维腔。这些结果的定量建模表明,每个CuO 2 平面内的双轴电荷密度波负责重构,并排除了层之间纵横交错的电荷条纹,这是Hg1201中可行的替代方法。最后,我们确定重构腔之间的特征间隙是伪间隙能量的很大一部分。

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