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Two-dimensional geometry of spin excitations in the high-transition-temperature superconductor YBa2Cu3O6+x

机译:高转变温度超导体YBa2Cu3O6 + x中自旋激发的二维几何

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The fundamental building block of the copper oxide superconductors is a Cu4O4 square plaquette. The plaquettes in most of these materials are slightly distorted to forma rectangular lattice, for which an influential theory predicts that high-transition-temperature (high-T-c) superconductivity is nucleated in 'stripes' aligned along one of the axes(1-3). This theory received strong support from experiments that indicated a one-dimensional character for the magnetic excitations in the high-T-c material YBa2Cu3O6.6 ( ref. 4). Here we report neutron scattering data on 'untwinned' YBa2Cu3O6+x crystals, in which the orientation of the rectangular lattice is maintained throughout the entire volume. Contrary to the earlier claim(4), we demonstrate that the geometry of the magnetic fluctuations is two-dimensional. Rigid stripe arrays therefore appear to be ruled out over a wide range of doping levels in YBa2Cu3O6+x, but the data may be consistent with liquid-crystalline stripe order(5). The debate about stripes has therefore been reopened.
机译:氧化铜超导体的基本组成部分是Cu4O4方形块。这些材料中的大多数的碎片都略微扭曲成矩形矩形格,据此影响理论预测,高转变温度(high-Tc)超导在沿一条轴对齐的``条''中成核(1-3) 。这一理论得到了实验的有力支持,这些实验表明高T-c材料YBa2Cu3O6.6的磁激发具有一维特征(参考文献4)。在这里,我们报告“未缠绕” YBa2Cu3O6 + x晶体的中子散射数据,其中矩形晶格的取向在整个体积中均保持不变。与先前的权利要求(4)相反,我们证明了磁涨落的几何形状是二维的。因此,似乎在YBa2Cu3O6 + x的大范围掺杂水平上都排除了刚性条纹阵列,但数据可能与液晶条纹顺序一致(5)。因此,有关条纹的辩论已经重新开始。

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