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Persistent spin excitations in doped antiferromagnets revealed by resonant inelastic light scattering

机译:共振非弹性光散射揭示了掺杂反铁磁体中的持久自旋激发

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How coherent quasiparticles emerge by doping quantum antiferromagnets is a key question in correlated electron systems, whose resolution is needed to elucidate the phase diagram of copper oxides. Recent resonant inelastic X-ray scattering (RIXS) experiments in hole-doped cuprates have purported to measure high-energy collective spin excitations that persist well into the overdoped regime and bear a striking resemblance to those found in the parent compound, challenging the perception that spin excitations should weaken with doping and have a diminishing effect on superconductivity. Here we show that RIXS at the Cu L 3-edge indeed provides access to the spin dynamical structure factor once one considers the full influence of light polarization. Further we demonstrate that high-energy spin excitations do not correlate with the doping dependence of T c, while low-energy excitations depend sensitively on doping and show ferromagnetic correlations. This suggests that high-energy spin excitations are marginal to pairing in cuprate superconductors.
机译:掺杂量子反铁磁体如何产生相干的准粒子是相关电子系统中的一个关键问题,相关电子系统的分辨率需要阐明氧化铜的相图。据称,最近在掺杂孔的铜酸盐中进行的共振非弹性X射线散射(RIXS)实验旨在测量高能集体自旋激发,该激发自始至终都很好地存在于超掺杂体系中,并且与母体化合物中发现的惊人相似,从而挑战了人们的认识自旋激发应随掺杂而减弱,并且对超导性的影响逐渐减小。在这里,我们表明,一旦考虑了光偏振的全部影响,位于Cu L 3 边缘的RIXS确实可以提供对自旋动力学结构因子的访问。我们进一步证明,高能自旋激发与T c 的掺杂依赖性无关,而低能激发则灵敏地取决于掺杂并显示出铁磁相关性。这表明高能自旋激发对于铜酸盐超导体中的配对而言是微不足道的。

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