High Field Magnet Laboratory (HFML-EMFL), Faculty of Science, Radboud University, Toernooiveld 7, 6525ED Nijmegen, The Netherlands.
Institute of Molecules and Materials, Faculty of Science, Radboud University, 6525 AJ Nijmegen, The Netherlands.
Nat Commun. 2017 Apr 13;8:15001. doi: 10.1038/ncomms15001.
In many layered metals, coherent propagation of electronic excitations is often confined to the highly conducting planes. While strong electron correlations and/or proximity to an ordered phase are believed to be the drivers of this electron confinement, it is still not known what triggers the loss of interlayer coherence in a number of layered systems with strong magnetic fluctuations, such as cuprates. Here, we show that a definitive signature of interlayer coherence in the metallic-layered triangular antiferromagnet PdCrO vanishes at the Néel transition temperature. Comparison with the relevant energy scales and with the isostructural non-magnetic PdCoO reveals that the interlayer incoherence is driven by the growth of short-range magnetic fluctuations. This establishes a connection between long-range order and interlayer coherence in PdCrO and suggests that in many other low-dimensional conductors, incoherent interlayer transport also arises from the strong interaction between the (tunnelling) electrons and fluctuations of some underlying order.
在许多层状金属中,电子激发的相干传播通常局限于高导电性的平面。虽然强烈的电子相关和/或接近有序相被认为是电子限制的驱动力,但在许多具有强磁涨落的层状系统中,如铜酸盐,是什么触发了层间相干性的丧失仍不清楚。在这里,我们表明,在金属层状三角反铁磁体 PdCrO 中,金属层间的相干性的明确特征在奈尔温度处消失。与相关能量尺度和等结构的非磁性 PdCoO 的比较表明,层间失相干是由短程磁涨落的增长驱动的。这在 PdCrO 中建立了长程有序和层间相干性之间的联系,并表明在许多其他低维导体中,由于(隧道)电子和一些基础有序的涨落之间的强烈相互作用,也会产生不相干的层间输运。