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TaTe₄中的主导电荷密度序

Dominant Charge Density Order in TaTe_{4}.

作者信息

Rong Hongtao, Gu Qiangqiang, Yang Xue, Lin Yihao, Zhang Chengcheng, Wang Yuan, Guo Ruixin, Hao Zhanyang, Cai Yongqing, Zhang Fayuan, Jiang Zhicheng, Yang Yichen, Jiang Qi, Liu Zhengtai, Ye Mao, Guo Shu, Wang Le, Lin Junhao, Lu Li, Liu Guangtong, Feng Ji, Chen Chaoyu

机构信息

Shenzhen Institute for Quantum Science and Engineering (SIQSE) and Department of Physics, <a href="https://ror.org/049tv2d57">Southern University of Science and Technology (SUSTech)</a>, Shenzhen 518055, China.

Department of Physics, <a href="https://ror.org/04p491231">The Pennsylvania State University</a>, University Park, Pennsylvania 16802, USA.

出版信息

Phys Rev Lett. 2024 Sep 13;133(11):116403. doi: 10.1103/PhysRevLett.133.116403.

Abstract

Electronic orders such as charge density wave (CDW) and superconductivity raise exotic physics and phenomena as evidenced in recently discovered kagome superconductors and transition metal chalcogenides. In most materials, CDW induces a weak, perturbative effect, manifested as shadow bands, minigaps, resistivity kinks, etc. Here we demonstrate a unique example-transition metal tetratellurides TaTe_{4}, in which the CDW order dominates the electronic structure and transport properties. Using angle-resolved photoemission spectroscopy, we found that the band structure of CDW TaTe_{4} is characterized by small, bulk electron pockets. Density functional theory analyses reveal their CDW origin from the folding of the original, large Fermi pockets. Importantly, the CDW induced pockets result in prominent frequencies in the quantum oscillation of the magnetoresistance. Satisfactory agreements are reached between results from photoemission spectroscopy, density functional theory, and quantum oscillation, concerning the shape, size, location, and angle dependence of the CDW pockets. Our results underline transition metal tetratellurides as an outstanding example for exploring the interplay between CDW, pressure induced superconductivity, and potential topological states under strong field.

摘要

诸如电荷密度波(CDW)和超导性等电子有序现象引发了奇异的物理现象,最近发现的 Kagome 超导体和过渡金属硫族化合物就是明证。在大多数材料中,CDW 会引发微弱的微扰效应,表现为阴影带、微能隙、电阻率扭结等。在此,我们展示了一个独特的例子——过渡金属四碲化物 TaTe₄,其中 CDW 有序主导了电子结构和输运性质。利用角分辨光电子能谱,我们发现 CDW TaTe₄ 的能带结构以小的体电子口袋为特征。密度泛函理论分析表明,它们的 CDW 起源于原始大费米面口袋的折叠。重要的是,CDW 诱导的口袋导致磁阻量子振荡中出现显著频率。在光电子能谱、密度泛函理论和量子振荡的结果之间,就 CDW 口袋的形状、大小、位置和角度依赖性达成了令人满意的一致。我们的结果强调了过渡金属四碲化物是探索 CDW、压力诱导超导性以及强场下潜在拓扑态之间相互作用的一个杰出例子。

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