首页> 外文期刊>Physics Reports: A Review Section of Physics Letters (Section C) >The spin-ladder and spin-chain system (La,YSr,Ca)(14)Cu24O41: Electronic phases, charge and spin dynamics
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The spin-ladder and spin-chain system (La,YSr,Ca)(14)Cu24O41: Electronic phases, charge and spin dynamics

机译:自旋梯和自旋链系统(La,YSr,Ca)(14)Cu24O41:电子相,电荷和自旋动力学

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The quasi-one-dimensional cuprates (La,Y,Sr,Ca)(14)Cu24O41, consisting of spin-chains and spin-ladders, have attracted much attention, mainly because they represent the first superconducting copper oxide with a non-square lattice. Theoretically, in isolated hole-doped two-leg ladders, superconductivity is tightly associated with the spin gap, although in competition with a charge-density wave (CDW). Indeed, both the gapped spin-liquid and CDW states have been established in the doped spin-ladders of Sr14-xCaxCu24O41, however the relevance of these objects to electronic properties and superconductivity is still subject of intensive discussion. In this treatise, an appreciable set of experimental data is reviewed, which has been acquired in recent years, indicating a variety of magnetic and charge arrangements found in the chains and ladders of underdoped (La,Y)(y)(S,Ca)(14-y)Cu24O41 and fully doped Sr14-xCaxCu24O41. Based on these data, phase diagrams are constructed for the chains of underdoped systerns (as a function of La, Y-substitution), as well as for the chains and ladders of the fully doped ones (as a function of Ca-substitution). We try to reconcile contradictory results concerning the charge dynamics in the ladders, like the hole redistribution between ladders and chains, collective modes and pseudogap, field-dependent transport and the temperature scales and doping levels at which the two-dimensional CDW develops in the ladder planes. The remaining open issues are clearly extracted. In the discussion the experimental results are contrasted with theoretical predictions, which allows us to conclude with two important remarks concerning the nature of the competing CDW and superconducting ground states. A density wave in ladders, characterized by a sinusoidal charge modulation, belongs to the class of broken symmetry patterns, which is theoretically predicted for strongly correlated low-dimensional electron systems; however its precise texture and nature is still an open issue. As for superconductivity, the presence of the spin gap in the normal state points towards d-wave symmetry and magnetic origin of the attractive interaction. However, there is a finite density of mobile quasi-particles that appears for high Ca contents and increases with pressure. concomitantly with increased two-dimensionality and metallicity. For this reason the superconductivity in the doped ladders of Sr14-xCaxCu24O41 which occurs under high pressure cannot simply be a stabilization of the d-wave superconductivity expected for a pure single ladder system. (c) 2006 Elsevier B.V. All rights reserved.
机译:由自旋链和自旋梯组成的准一维铜酸盐(La,Y,Sr,Ca)(14)Cu24O41备受关注,主要是因为它们代表了第一个具有非正方形的超导氧化铜格子。从理论上讲,在隔离的掺杂空穴的两脚阶梯中,超导与自旋间隙紧密相关,尽管与电荷密度波(CDW)竞争。确实,在Sr14-xCaxCu24O41的掺杂自旋梯形结构中已经建立了带隙的自旋液体和CDW状态,但是这些对象与电子特性和超导性的相关性仍需深入讨论。在本论文中,回顾了近年来获得的一组可观的实验数据,表明在掺杂不足的(La,Y)(y)(S,Ca)的链和梯中发现了各种磁和电荷排列(14-y)Cu24O41和完全掺杂的Sr14-xCaxCu24O41。根据这些数据,可以为低掺杂系统的链(作为La,Y替代的函数)以及全掺杂系统的链和阶梯(作为Ca替代的函数)构建相图。我们尝试调和有关梯子中电荷动力学的矛盾结果,例如梯子和链之间的空穴重新分布,集体模式和伪间隙,场依赖的传输以及二维CDW在梯子中发展的温度尺度和掺杂水平飞机。其余未解决的问题已明确提取。在讨论中,实验结果与理论预测进行了对比,这使我们可以得出两个有关竞争性CDW和超导基态性质的重要结论。以正弦电荷调制为特征的梯形密度波属于破碎的对称图形,在理论上可以预测强相关的低维电子系统。但是,其精确的纹理和性质仍然是一个未解决的问题。至于超导性,在正常状态下自旋间隙的存在指向d波对称性和吸引力相互作用的磁源。但是,对于高Ca含量,会出现有限密度的移动准粒子,并随压力的增加而增加。同时增加了二维性和金属性。因此,在高压下发生的Sr14-xCaxCu24O41掺杂阶梯中的超导不能简单地成为纯单阶梯系统所期望的d波超导的稳定。 (c)2006 Elsevier B.V.保留所有权利。

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