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电子掺杂铜氧化物超导体中的三维集体电荷激发。

Three-dimensional collective charge excitations in electron-doped copper oxide superconductors.

机构信息

Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator Laboratory and Stanford University, Menlo Park, CA, USA.

Université Grenoble Alpes, CNRS, Institut Néel, Grenoble, France.

出版信息

Nature. 2018 Nov;563(7731):374-378. doi: 10.1038/s41586-018-0648-3. Epub 2018 Oct 31.

Abstract

High-temperature copper oxide superconductors consist of stacked CuO planes, with electronic band structures and magnetic excitations that are primarily two-dimensional, but with superconducting coherence that is three-dimensional. This dichotomy highlights the importance of out-of-plane charge dynamics, which has been found to be incoherent in the normal state within the limited range of momenta accessible by optics. Here we use resonant inelastic X-ray scattering to explore the charge dynamics across all three dimensions of the Brillouin zone. Polarization analysis of recently discovered collective excitations (modes) in electron-doped copper oxides reveals their charge origin, that is, without mixing with magnetic components. The excitations disperse along both the in-plane and out-of-plane directions, revealing its three-dimensional nature. The periodicity of the out-of-plane dispersion corresponds to the distance between neighbouring CuO planes rather than to the crystallographic c-axis lattice constant, suggesting that the interplane Coulomb interaction is responsible for the coherent out-of-plane charge dynamics. The observed properties are hallmarks of the long-sought 'acoustic plasmon', which is a branch of distinct charge collective modes predicted for layered systems and argued to play a substantial part in mediating high-temperature superconductivity.

摘要

高温铜氧化物超导体由堆叠的 CuO 平面组成,其电子能带结构和磁激发主要是二维的,但超导相干是三维的。这种二分法强调了面外电荷动力学的重要性,在光学可及的有限动量范围内,已经发现其在正常态下是无关联的。在这里,我们使用共振非弹性 X 射线散射来探索整个布里渊区的三个维度的电荷动力学。最近在电子掺杂铜氧化物中发现的集体激发(模式)的极化分析揭示了它们的电荷起源,即不与磁分量混合。激发沿着面内和面外两个方向色散,揭示了其三维性质。面外色散的周期性与相邻 CuO 平面之间的距离相对应,而不是与晶体学 c 轴晶格常数相对应,这表明层间库仑相互作用负责相干的面外电荷动力学。观察到的性质是长期以来寻求的“声激子”的标志,声激子是预测层状系统中独特电荷集体模式的一个分支,并被认为在介导高温超导性方面起着重要作用。

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