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Fermi surface reconstruction in electron-doped cuprates without antiferromagnetic long-range order

机译:电子掺杂的铜酸盐中的费米表面重构无反铁磁长程

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摘要

Fermi surface (FS) topology is a fundamental property of metals and superconductors. In electron-doped cuprate Nd2−xCexCuO4 (NCCO), an unexpected FS reconstruction has been observed in optimal- and overdoped regime (x = 0.15–0.17) by quantum oscillation measurements (QOM). This is all the more puzzling because neutron scattering suggests that the antiferromagnetic (AFM) long-range order, which is believed to reconstruct the FS, vanishes before x = 0.14. To reconcile the conflict, a widely discussed external magnetic-field–induced AFM long-range order in QOM explains the FS reconstruction as an extrinsic property. Here, we report angle-resolved photoemission (ARPES) evidence of FS reconstruction in optimal- and overdoped NCCO. The observed FSs are in quantitative agreement with QOM, suggesting an intrinsic FS reconstruction without field. This reconstructed FS, despite its importance as a basis to understand electron-doped cuprates, cannot be explained under the traditional scheme. Furthermore, the energy gap of the reconstruction decreases rapidly near x = 0.17 like an order parameter, echoing the quantum critical doping in transport. The totality of the data points to a mysterious order between x = 0.14 and 0.17, whose appearance favors the FS reconstruction and disappearance defines the quantum critical doping. A recent topological proposal provides an ansatz for its origin.
机译:费米表面(FS)拓扑是金属和超导体的基本属性。在电子掺杂的铜酸盐Nd2-xCexCuO4(NCCO)中,通过量子振荡测量(QOM)在最佳和超掺杂状态(x = 0.15-0.17)中观察到了意外的FS重建。这更加令人费解,因为中子散射表明反铁磁(AFM)的远距离阶在x = 0.14之前消失了,据信它能重建FS。为了调和冲突,在QOM中广泛讨论的外部磁场引起的AFM远距离顺序将FS重建解释为外在属性。在这里,我们报告在最佳和过度掺杂的NCCO中FS重建的角度分辨光发射(ARPES)证据。观测到的FS与QOM定量吻合,表明没有田间的固有FS重建。尽管重建的FS作为理解电子掺杂的铜酸盐的基础很重要,但在传统方案下无法解释。此外,重建的能隙像一个阶数参数一样在x = 0.17附近迅速减小,与传输中的量子临界掺杂相呼应。数据的总指向在x = 0.14和0.17之间的神秘顺序,其出现有利于FS重建,消失则定义了量子临界掺杂。最近的拓扑提议为其起源提供了一个ansatz。

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