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Doping-dependent charge order correlations in electron-doped cuprates

机译:电子掺杂铜酸盐中与掺杂有关的电荷阶数相关性

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摘要

Understanding the interplay between charge order (CO) and other phenomena (for example, pseudogap, antiferromagnetism, and superconductivity) is one of the central questions in the cuprate high-temperature superconductors. The discovery that similar forms of CO exist in both hole- and electron-doped cuprates opened a path to determine what subset of the CO phenomenology is universal to all the cuprates. We use resonant x-ray scattering to measure the CO correlations in electron-doped cuprates (La2−xCexCuO4 and Nd2−xCexCuO4) and their relationship to antiferromagnetism, pseudogap, and superconductivity. Detailed measurements of Nd2−xCexCuO4 show that CO is present in the x = 0.059 to 0.166 range and that its doping-dependent wave vector is consistent with the separation between straight segments of the Fermi surface. The CO onset temperature is highest between x = 0.106 and 0.166 but decreases at lower doping levels, indicating that it is not tied to the appearance of antiferromagnetic correlations or the pseudogap. Near optimal doping, where the CO wave vector is also consistent with a previously observed phonon anomaly, measurements of the CO below and above the superconducting transition temperature, or in a magnetic field, show that the CO is insensitive to superconductivity. Overall, these findings indicate that, although verified in the electron-doped cuprates, material-dependent details determine whether the CO correlations acquire sufficient strength to compete for the ground state of the cuprates.
机译:理解电荷序(CO)与其他现象(例如伪间隙,反铁磁性和超导电性)之间的相互作用是铜酸盐高温超导体的中心问题之一。在空穴和电子掺杂的铜酸盐中都存在相似形式的CO的发现,为确定CO现象的哪个子集对所有铜酸盐都具有普遍性开辟了一条道路。我们使用共振X射线散射来测量掺杂电子的铜酸盐(La2-xCexCuO4和Nd2-xCexCuO4)中的CO相关性以及它们与反铁磁性,伪间隙和超导性的关系。 Nd2-xCexCuO4的详细测量结果表明,CO存在于x = 0.059至0.166范围内,并且其与掺杂有关的波矢与费米表面笔直部分之间的间距一致。 CO起始温度在x = 0.106至0.166之间最高,但在较低的掺杂水平下会降低,这表明它与反铁磁相关性或伪间隙的出现无关。在接近最佳掺杂的情况下(CO波矢量也与以前观察到的声子异常一致),在超导转变温度之上和之下或在磁场中对CO的测量表明,CO对超导不敏感。总体而言,这些发现表明,尽管在掺杂电子的铜酸盐中得到了验证,但与材料有关的细节决定了CO相关性是否获得足够的强度来竞争铜酸盐的基态。

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