Department of Physics, University of California, Davis, CA 95616, USA.
Proc Natl Acad Sci U S A. 2012 Nov 6;109(45):E3067-73. doi: 10.1073/pnas.1209609109. Epub 2012 Sep 24.
The heavy electron Kondo liquid is an emergent state of condensed matter that displays universal behavior independent of material details. Properties of the heavy electron liquid are best probed by NMR Knight shift measurements, which provide a direct measure of the behavior of the heavy electron liquid that emerges below the Kondo lattice coherence temperature as the lattice of local moments hybridizes with the background conduction electrons. Because the transfer of spectral weight between the localized and itinerant electronic degrees of freedom is gradual, the Kondo liquid typically coexists with the local moment component until the material orders at low temperatures. The two-fluid formula captures this behavior in a broad range of materials in the paramagnetic state. In order to investigate two-fluid behavior and the onset and physical origin of different long range ordered ground states in heavy electron materials, we have extended Knight shift measurements to URu(2)Si(2), CeIrIn(5), and CeRhIn(5). In CeRhIn(5) we find that the antiferromagnetic order is preceded by a relocalization of the Kondo liquid, providing independent evidence for a local moment origin of antiferromagnetism. In URu(2)Si(2) the hidden order is shown to emerge directly from the Kondo liquid and so is not associated with local moment physics. Our results imply that the nature of the ground state is strongly coupled with the hybridization in the Kondo lattice in agreement with phase diagram proposed by Yang and Pines.
重电子 Kondo 液体是凝聚态物质的一种涌现状态,表现出与材料细节无关的普遍行为。重电子液体的性质最好通过 NMR 奈特位移测量来探测,这提供了对重电子液体行为的直接测量,这种行为出现在 Kondo 晶格相干温度以下,因为局域矩晶格与背景传导电子发生混合。由于局域和巡游电子自由度之间的光谱权重转移是逐渐的,因此 Kondo 液体通常与局域矩分量共存,直到材料在低温下有序。两流体公式在顺磁态的广泛材料范围内捕捉到了这种行为。为了研究重电子材料中两流体行为以及不同长程有序基态的出现和物理起源,我们已经将奈特位移测量扩展到了 URu(2)Si(2)、CeIrIn(5)和 CeRhIn(5)。在 CeRhIn(5)中,我们发现反铁磁序之前存在 Kondo 液体的重新定位,这为反铁磁性的局域矩起源提供了独立的证据。在 URu(2)Si(2)中,隐藏序被证明直接从 Kondo 液体中出现,因此与局域矩物理无关。我们的结果表明,基态的性质与 Kondo 晶格中的杂化强烈耦合,这与 Yang 和 Pines 提出的相图一致。