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Progress in neutron scattering studies of spin excitations in high-Tc cuprates

机译:高Tc铜酸盐中自旋激发的中子散射研究进展

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Neutron scattering experiments continue to improve our knowledge of spin fluctuations in layered cuprates, excitations that are symptomatic of the electronic correlations underlying high-temperature superconductivity. Timeof- flight spectrometers, together with new and varied single crystal samples, have provided a more complete characterization of the magnetic energy spectrum and its variation with carrier concentration. While the spin excitations appear anomalous in comparison with simple model systems, there is clear consistency among a variety of cuprate families. Focusing initially on hole-doped systems, we review the nature of the magnetic spectrum, and variations in magnetic spectral weight with doping. We consider connections with the phenomena of charge and spin stripe order, and the potential generality of such correlations as suggested by studies of magnetic-field and impurity induced order. We contrast the behavior of the hole-doped systems with the trends found in the electron-doped superconductors. Returning to hole-doped cuprates, studies of translation-symmetry-preserving magnetic order are discussed, along with efforts to explore new systems. We conclude with a discussion of future challenges.
机译:中子散射实验继续提高了我们对层状铜酸盐中自旋涨落的认识,这些涨潮是高温超导基础电子相关性的征兆。飞行时间谱仪与新的和变化的单晶样品一起,对磁能谱及其随载流子浓度的变化提供了更完整的表征。与简单的模型系统相比,自旋激发显得异常,但各种铜酸盐家族之间却存在明显的一致性。最初着眼于空穴掺杂系统,我们回顾了磁光谱的性质以及掺杂时磁光谱权重的变化。我们考虑了与电荷和自旋条纹有序现象的联系,以及磁场和杂质感应有序研究表明的这种相关性的潜在普遍性。我们将空穴掺杂系统的行为与电子掺杂超导体中的趋势进行对比。回到掺杂孔的铜酸盐中,讨论了保持平移对称磁性顺序的研究,并努力探索新系统。最后,我们讨论了未来的挑战。

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