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Spins, Stripes, and Superconductivity in Hole-Doped Cuprates

机译:孔掺杂铜酸盐中的旋转,条纹和超导性

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One of the major themes in correlated electron physics over the last quarter century has been the problem of high-temperature superconductivity in hole-doped copper-oxide compounds. Fundamental to this problem is the competition between antiferromagnetic spin correlations, a symptom of strong Coulomb interactions, and the kinetic energy of the doped carriers, which favors delocalization. After discussing some of the early challenges in the field, I describe the experimental picture provided by a variety of spectroscopic and transport techniques. Then I turn to the technique of neutron scattering, and discuss how it is used to determine spin correlations, especially in model systems of quantum magnetism. Neutron scattering and complementary techniques have determined the extent to which antiferromagnetic spin correlations survive in the cuprate superconductors. One experimental case involves the ordering of spin and charge stripes. I first consider related measurements on model compounds, such as La_(2-x)Sr_xNiO_(4+δ), and then discuss the case of La_(2-x)Ba_xCuO_4. In the latter system, recent transport studies have demonstrated that quasi-two-dimensional superconductivity coexists with the stripe order, but with frustrated phase order between the layers. This has led to new concepts for the coexistence of spin order and superconductivity. While the relevance of stripe correlations to high-temperature superconductivity remains a subject of controversy, there is no question that stripes are an intriguing example of electron matter that results from strong correlations.
机译:之一在相关电子物理学在过去25年的主要主题一直高温超导的掺杂空穴的氧化铜的化合物的问题。根本的解决这个问题是掺杂载流子的动能,这有利于离域的反铁磁的相关性之间的竞争,强烈的库仑相互作用的症状,和。在讨论一些在该领域的早期挑战之后,我描述了通过各种光谱和传输技术提供了实验图片。于是我转向中子散射技术,并讨论如何用它来确定自旋的相关性,尤其是在量子磁的模型系统。中子散射和互补技术已确定为其中反铁磁自旋相关性在铜氧化物超导体生存的程度。一个实验案例涉及自旋和电荷条纹的排序。我首先考虑模型化合物相关的测量,诸如了La_(2-X)Sr_xNiO_(4 +δ),然后讨论了La_(2-X)Ba_xCuO_4的情况下。在后者的系统中,最近的运输研究已经表明,准二维超导共存与条纹顺序,但与层之间相受挫顺序。这导致自旋秩序和超导共存的新概念。而条纹相关以高温超导电性的相关性仍然争论的主题,没有疑问,条纹是电子的一个有趣的例子物质从强相关性的结果。

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