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The unprecedented phenomenon that a charge density wave (CDW) emerges inside the antiferromagnetic (AFM) phase indicates an unusual CDW mechanism associated with magnetism in FeGe. Here, we demonstrate that both the CDW and magnetism of…

Strongly Correlated Electrons · Physics 2024-07-08 Xueliang Wu , Xinrun Mi , Long Zhang , Chin-Wei Wang , Nour Maraytta , Xiaoyuan Zhou , Mingquan He , Michael Merz , Yisheng Chai , Aifeng Wang

Kagome lattice can host abundant exotic quantum states such as superconductivity and charge density wave (CDW). Recently, successive orders of A-type antiferromagnetism (AFM), CDW and canted AFM have been manifested upon cooling in kagome…

We report on the charge dynamics of kagome FeGe, an antiferromagnet with a charge density wave (CDW) transition at $T_{\mathrm{CDW}} \simeq 105$ K, using polarized infrared spectroscopy and band structure calculations. We reveal pronounced…

Strongly Correlated Electrons · Physics 2025-03-03 Shaohui Yi , Zhiyu Liao , Qi Wang , Haiyang Ma , Jianpeng Liu , Xiaokun Teng , Bin Gao , Pengcheng Dai , Yaomin Dai , Jianzhou Zhao , Yanpeng Qi , Bing Xu , Xianggang Qiu

The discovery of a charge density wave (CDW) in the antiferromagnetic kagome metal FeGe has prompted interest in the interplay between kagome physics, CDW, and magnetism. However, a crucial aspect for understanding these emergent…

Materials Science · Physics 2025-01-30 Hengxin Tan , Binghai Yan

The discovery of the charge density wave order (CDW) within a magnetically ordered phase in the kagome lattice FeGe has provided a promising platform to investigate intertwined degrees of freedom in kagome lattices. Recently, a method based…

Strongly Correlated Electrons · Physics 2025-07-18 Ji Seop Oh , Ananya Biswas , Mason Klemm , Hengxin Tan , Makoto Hashimoto , Donghui Lu , Binghai Yan , Pengcheng Dai , Robert J. Birgeneau , Ming Yi

Two-dimensional (2D) kagome lattice metals are interesting because they display flat electronic bands, Dirac points, Van Hove singularities, and can have interplay between charge density wave (CDW), magnetic order, and superconductivity. In…

The intrinsic frustrated nature of a kagome lattice is amenable to the realization of exotic phases of matter, such as quantum spin liquids or spin ices, and more recently the multiple-$\mathrm{\textbf{q}}$ charge density waves (CDW) in the…

Kagome metals show rich competing quantum phases due to geometry frustration, flat bands, many-body effects, and non-trivial topology. Recently, a novel charge density wave (CDW) was discovered deep inside the antiferromagnetic phase of…

Strongly Correlated Electrons · Physics 2024-12-09 Ziyuan Chen , Xueliang Wu , Ruotong Yin , Jiakang Zhang , Shiyuan Wang , Yuanji Li , Mingzhe Li , Aifeng Wang , Yilin Wang , Ya-Jun Yan , Dong-Lai Feng

Recent experiments report a charge density wave (CDW) in the antiferromagnet FeGe, but the nature of the charge ordering and the associated structural distortion remains elusive. We discuss the structural and electronic properties of FeGe.…

Unveiling the interplay between spin density wave (SDW) and charge density wave (CDW) orders in correlated electron materials is important to obtain a comprehensive understanding of their electronic, structural, and magnetic properties.…

Strongly Correlated Electrons · Physics 2025-12-04 Mason L. Klemm , Tingjun Zhang , Barry L. Winn , Fankang Li , Feng Ye , Sijie Xu , Xiaokun Teng , Bin Gao , Ming Yi , Pengcheng Dai

The intertwining of charge, spin, and lattice degrees of freedom underlies the emergent properties of correlated materials. A recent prominent example is the kagome metal FeGe, which hosts coexisting charge density wave (CDW) and…

A hallmark of strongly correlated quantum materials is the rich phase diagram resulting from competing and intertwined phases with nearly degenerate ground state energies. A well-known example is the copper oxides, where a charge density…

The charge density wave (CDW) is a macroscopic quantum state characterized by long-range lattice distortion and modulated charge density. Conventionally, CDWs compete with other electronic orders (e.g. superconductivity) and are suppressed…

Strongly Correlated Electrons · Physics 2025-07-23 Liucheng Chen , Mingwei Ma , Xiaohui Yu , Fang Hong

Exotic quantum states arise from the interplay of various degrees of freedom such as charge, spin, orbital, and lattice. Recently, a novel short-ranged charge order (CO) was discovered deep inside the antiferromagnetic phase of Kagome…

Kagome metals provide a material platform for probing new correlated quantum phenomena due to the naturally incorporated linear dispersions, flat bands, and Van Hove singularities in their electronic structures. Among these quantum…

Strongly Correlated Electrons · Physics 2026-04-14 Kaila Jenkins , Yuan Zhu , Dechen Zhang , Guoxin Zheng , Kuan-Wen Chen , Aaron Chan , Sijie Xu , Mason L. Klemm , Bin Gao , Ming Yi , Pengcheng Dai , Lu Li

The charge density wave (CDW), a translational symmetry breaking electronic liquid, plays a pivotal role in correlated quantum materials, such as high-T$_c$ superconductors and topological semimetals. Recently, CDWs that possibly intertwine…

In this work, we theoretically study the charge order and orbital magnetic properties of a new type of antiferromagnetic kagome metal FeGe. Based on first principles density functional theory (DFT) calculations, we have studied the…

Mesoscale and Nanoscale Physics · Physics 2023-03-07 Hai-Yang Ma , Jia-Xin Yin , M. Zahid Hasan , Jianpeng Liu

Kagome metals exhibit rich quantum states by the intertwining of lattice, charge, orbital and spin degrees of freedom. Recently, a novel charge density wave (CDW) ground state was discovered in kagome magnet FeGe and was revealed to be…

Materials Science · Physics 2024-07-16 Yilin Wang

Kagome materials provide a promising platform to explore intriguing correlated phenomena including magnetism, charge density wave (CDW), and nontrivial band topology. Recently, a CDW order was observed in antiferromagnetic kagome metal…

Materials Science · Physics 2023-12-14 Binhua Zhang , Junyi Ji , Changsong Xu , Hongjun Xiang

Electron correlations often lead to emergent orders in quantum materials. Kagome lattice materials are emerging as an exciting platform for realizing quantum topology in the presence of electron correlations. This proposal stems from the…

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