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高温超导体中场致磁性的三维特性

Three-dimensionality of field-induced magnetism in a high-temperature superconductor.

作者信息

Lake B, Lefmann K, Christensen N B, Aeppli G, McMorrow D F, Ronnow H M, Vorderwisch P, Smeibidl P, Mangkorntong N, Sasagawa T, Nohara M, Takagi H

机构信息

Clarendon Laboratory, University of Oxford, Parks Road, Oxford OX1 3PU, UK.

出版信息

Nat Mater. 2005 Sep;4(9):658-62. doi: 10.1038/nmat1452. Epub 2005 Aug 14.

Abstract

Many physical properties of high-temperature superconductors are two-dimensional phenomena derived from their square-planar CuO2 building blocks. This is especially true of the magnetism from the copper ions. As mobile charge carriers enter the CuO2 layers, the antiferromagnetism of the parent insulators, where each copper spin is antiparallel to its nearest neighbours, evolves into a fluctuating state where the spins show tendencies towards magnetic order of a longer periodicity. For certain charge-carrier densities, quantum fluctuations are sufficiently suppressed to yield static long-period order, and external magnetic fields also induce such order. Here we show that, in contrast to the chemically controlled order in superconducting samples, the field-induced order in these same samples is actually three-dimensional, implying significant magnetic linkage between the CuO2 planes. The results are important because they show that there are three-dimensional magnetic couplings that survive into the superconducting state, and coexist with the crucial inter-layer couplings responsible for three-dimensional superconductivity. Both types of coupling will straighten the vortex lines, implying that we have finally established a direct link between technical superconductivity, which requires zero electrical resistance in an applied magnetic field and depends on vortex dynamics, and the underlying antiferromagnetism of the cuprates.

摘要

高温超导体的许多物理性质都是源自其平面正方形CuO₂结构单元的二维现象。对于铜离子产生的磁性而言尤其如此。当移动电荷载流子进入CuO₂层时,母体绝缘体的反铁磁性(其中每个铜自旋与其最近邻的自旋反平行)演变成一种波动状态,此时自旋呈现出更长周期性的磁有序倾向。对于某些电荷载流子密度,量子涨落被充分抑制以产生静态的长周期有序,并且外部磁场也会诱导这种有序。我们在此表明,与超导样品中受化学控制的有序不同,这些相同样品中的场致有序实际上是三维的,这意味着CuO₂平面之间存在显著的磁耦合。这些结果很重要,因为它们表明存在三维磁耦合,这种耦合在超导态中依然存在,并与负责三维超导性的关键层间耦合共存。这两种类型的耦合都会使涡旋线变直,这意味着我们最终在技术超导性(在施加磁场中需要零电阻且依赖于涡旋动力学)与铜酸盐潜在的反铁磁性之间建立了直接联系。

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