LeBoeuf David, Doiron-Leyraud Nicolas, Levallois Julien, Daou R, Bonnemaison J-B, Hussey N E, Balicas L, Ramshaw B J, Liang Ruixing, Bonn D A, Hardy W N, Adachi S, Proust Cyril, Taillefer Louis
Département de physique and RQMP, Université de Sherbrooke, Sherbrooke J1K 2R1, Canada.
Nature. 2007 Nov 22;450(7169):533-6. doi: 10.1038/nature06332.
High-temperature superconductivity in copper oxides occurs when the materials are chemically tuned to have a carrier concentration intermediate between their metallic state at high doping and their insulating state at zero doping. The underlying evolution of the electron system in the absence of superconductivity is still unclear, and a question of central importance is whether it involves any intermediate phase with broken symmetry. The Fermi surface of the electronic states in the underdoped 'YBCO' materials YBa2Cu3O(y) and YBa2Cu4O8 was recently shown to include small pockets, in contrast with the large cylinder that characterizes the overdoped regime, pointing to a topological change in the Fermi surface. Here we report the observation of a negative Hall resistance in the magnetic-field-induced normal state of YBa2Cu3O(y) and YBa2Cu4O8, which reveals that these pockets are electron-like rather than hole-like. We propose that these electron pockets most probably arise from a reconstruction of the Fermi surface caused by the onset of a density-wave phase, as is thought to occur in the electron-doped copper oxides near the onset of antiferromagnetic order. Comparison with materials of the La2CuO4 family that exhibit spin/charge density-wave order suggests that a Fermi surface reconstruction also occurs in those materials, pointing to a generic property of high-transition-temperature (T(c)) superconductors.
当铜氧化物材料在化学上被调整为具有介于高掺杂时的金属态和零掺杂时的绝缘态之间的载流子浓度时,就会出现高温超导现象。在不存在超导性的情况下,电子系统的潜在演化仍不清楚,一个至关重要的问题是它是否涉及任何对称性破缺的中间相。最近发现,欠掺杂的“YBCO”材料YBa2Cu3O(y)和YBa2Cu4O8中的电子态费米面包含小口袋,这与过掺杂区域特征性的大圆柱形成对比,表明费米面发生了拓扑变化。在此,我们报告在YBa2Cu3O(y)和YBa2Cu4O8的磁场诱导正常态中观察到负霍尔电阻,这表明这些口袋是电子型而非空穴型。我们提出,这些电子口袋很可能源于密度波相开始时导致的费米面重构,就像在反铁磁序开始附近的电子掺杂铜氧化物中所认为的那样。与表现出自旋/电荷密度波序的La2CuO4家族材料的比较表明,这些材料中也发生了费米面重构,这指向了高温转变温度(T(c))超导体的一个普遍特性。