Suppr超能文献

在 URu(2)Si(2)中,对费诺晶格到“隐藏序”转变的成像。

Imaging the Fano lattice to 'hidden order' transition in URu(2)Si(2).

机构信息

Laboratory for Atomic and Solid State Physics, Department of Physics, Cornell University, Ithaca, New York 14853, USA.

出版信息

Nature. 2010 Jun 3;465(7298):570-6. doi: 10.1038/nature09073.

Abstract

Within a Kondo lattice, the strong hybridization between electrons localized in real space (r-space) and those delocalized in momentum-space (k-space) generates exotic electronic states called 'heavy fermions'. In URu(2)Si(2) these effects begin at temperatures around 55 K but they are suddenly altered by an unidentified electronic phase transition at T(o) = 17.5 K. Whether this is conventional ordering of the k-space states, or a change in the hybridization of the r-space states at each U atom, is unknown. Here we use spectroscopic imaging scanning tunnelling microscopy (SI-STM) to image the evolution of URu(2)Si(2) electronic structure simultaneously in r-space and k-space. Above T(o), the 'Fano lattice' electronic structure predicted for Kondo screening of a magnetic lattice is revealed. Below T(o), a partial energy gap without any associated density-wave signatures emerges from this Fano lattice. Heavy-quasiparticle interference imaging within this gap reveals its cause as the rapid splitting below T(o) of a light k-space band into two new heavy fermion bands. Thus, the URu(2)Si(2) 'hidden order' state emerges directly from the Fano lattice electronic structure and exhibits characteristics, not of a conventional density wave, but of sudden alterations in both the hybridization at each U atom and the associated heavy fermion states.

摘要

在近藤晶格中,电子在实空间(r 空间)中的局域化和在动量空间(k 空间)中的离域化之间的强杂化产生了称为“重费米子”的奇特电子态。在 URu(2)Si(2)中,这些效应在大约 55 K 的温度下开始,但在 T(o)=17.5 K 时被一个未被识别的电子相变突然改变。这种情况是 k 空间状态的常规排序,还是每个 U 原子的 r 空间状态的杂化变化,尚不清楚。在这里,我们使用光谱成像扫描隧道显微镜(SI-STM)同时在 r 空间和 k 空间中对 URu(2)Si(2)电子结构的演化进行成像。在 T(o)以上,揭示了近藤屏蔽磁晶格的“Fano 晶格”电子结构的预测。在 T(o)以下,Fano 晶格中出现了一个没有任何相关密度波特征的部分能隙。在这个能隙内进行的重准粒子干涉成像表明,其原因是轻 k 空间能带在 T(o)以下迅速分裂成两个新的重费米子能带。因此,URu(2)Si(2)“隐藏秩序”状态直接来自 Fano 晶格电子结构,并表现出特征,不是传统的密度波,而是每个 U 原子的杂化以及相关的重费米子状态的突然变化。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验