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Competing ferromagnetism in high-temperature copper oxide superconductors

机译:高温氧化铜超导体中的竞争铁磁性

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摘要

The extreme variability of observables across the phase diagram of the cuprate high-temperature superconductors has remained a profound mystery, with no convincing explanation for the superconducting dome. Although much attention has been paid to the underdoped regime of the hole-doped cuprates because of its proximity to a complex Mott insulating phase, little attention has been paid to the overdoped regime. Experiments are beginning to reveal that the phenomenology of the overdoped regime is just as puzzling. For example, the electrons appear to form a Landau Fermi liquid, but this interpretation is problematic; any trace of Mott phenomena, as signified by incommensurate antiferromagnetic fluctuations, is absent, and the uniform spin susceptibility shows a ferromagnetic upturn. Here, we show and justify that many of these puzzles can be resolved if we assume that competing ferromagnetic fluctuations are simultaneously present with superconductivity, and the termination of the superconducting dome in the overdoped regime marks a quantum critical point beyond which there should be a genuine ferromagnetic phase at zero temperature. We propose experiments and make predictions to test our theory and suggest that an effort must be mounted to elucidate the nature of the overdoped regime, if the problem of high-temperature superconductivity is to be solved. Our approach places competing order as the root of the complexity of the cuprate phase diagram.
机译:铜酸盐高温超导体相图中可观测物的极端变异性仍然是一个深奥的谜,对超导圆顶没有令人信服的解释。尽管由于它靠近复杂的Mott绝缘相,已经引起了人们对空穴掺杂的铜酸盐的掺杂不足的关注,但是对掺杂过度的体系的关注却很少。实验开始揭示,超掺杂体系的现象学同样令人费解。例如,电子似乎形成了Landau Fermi液体,但是这种解释是有问题的。不存在由不相称的反铁磁波动所表示的任何Mott现象痕迹,并且均匀的自旋磁化率显示出铁磁上升。在这里,我们证明并证明,如果我们假设竞争性的铁磁波动与超导同时存在,那么许多难题都可以解决,并且超导圆顶在超掺杂体系中的终止标志着一个量子临界点,在这个临界点之上应该有一个真正的零温度下的铁磁相。我们提出实验并做出预测以检验我们的理论,并建议,如果要解决高温超导问题,就必须努力阐明过量掺杂的性质。我们的方法将竞争顺序作为铜酸盐相图复杂性的根源。

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