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Related papers: Origin of Unconventional Quantum Oscillations in K…

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We report quantum oscillation measurements on the kagome compounds ATi$_3$Bi$_5$ (A=Rb, Cs) in magnetic fields up to 41.5 T and temperatures down to 350 mK. In addition to the frequencies observed in previous studies, we have observed…

Quantum oscillations can reveal Fermi surfaces and their topology in solids and provide a powerful tool for understanding transport and electronic properties. It is well established that the oscillation frequency maps the Fermi surface area…

Strongly Correlated Electrons · Physics 2023-07-11 Yongkang Li , Hengxin Tan , Binghai Yan

The recently discovered kagome materials $A$V$_3$Sb$_5$ ($A$ = K, Rb, Cs) attract intense research interest in intertwined topology, superconductivity, and charge density waves (CDW). Although the in-plane $2\times2$ CDW is well studied,…

Strongly Correlated Electrons · Physics 2023-07-31 Hengxin Tan , Yongkang Li , Yizhou Liu , Daniel Kaplan , Ziqiang Wang , Binghai Yan

Kagome system usually attracts great interest in condensed matter physics due to its unique structure hosting various exotic states such as superconductivity (SC), charge density wave (CDW), and nontrivial topological states. Topological…

Strongly Correlated Electrons · Physics 2024-11-21 Zixian Dong , Lei Shi , Bing Wang , Mengwu Huo , Xing Hua , Chaoxin Huang , Peiyue Ma , Yunwei Zhang , Bing Shen , Meng Wang

The multiband kagome superconductor CsV3Sb5 exhibits complex orbital textures on the Fermi surface, making the orbital origins of its cascade of correlated electronic states and superconductivity a major scientific puzzle. Chemical doping…

Strong correlations promote singular properties such as strange metallicity, which shows considerable commonality across quantum materials platforms. Understanding the mechanism for such emerging universality is an outstanding challenge,…

While correlated phenomena of flat bands have been extensively studied in twisted systems, the ordered states that emerge from interactions in the intrinsic flat bands of kagome lattice materials remain largely unexplored. The newly…

The recently discovered layered Kagome metals of composition AV3Sb5 (A = K, Rb, Cs) exhibit a complex interplay among superconductivity, charge density wave order, topologically non-trivial electronic band structure and geometrical…

Kagome metals are a unique class of quantum materials characterized by their distinct atomic lattice arrangement, featuring interlocking triangles and expansive hexagonal voids. These lattice structures impart exotic properties, including…

Materials Science · Physics 2024-11-21 Yifan Wei , Arjyama Bordoloi , Chaon-En , Chuang , Sobhit Singh

In this account, we will give an overview of our research progress on novel quantum properties in topological quantum materials with kagome lattice. Here, there are mainly two categories of kagome materials: magnetic kagome materials and…

Superconductivity · Physics 2024-09-09 Qi Wang , Hechang Lei , Yanpeng Qi , Claudia Felser

The kagom\'e metals RbTi$_3$Bi$_5$ and CsTi$_3$Bi$_5$ were synthesized both as polycrystalline powders by heating the elements an argon atmosphere and as single crystals grown using a self-flux method. The compounds crystallize in the…

Metals with kagome lattice provide bulk materials to host both the flat-band and Dirac electronic dispersions. A new family of kagome metals is recently discovered in AV6Sn6. The Dirac electronic structures of this material need more…

Shifting the Fermi level of the celebrated $AM_3X_5$ (135) compounds into proximity of flat bands strongly enhances electronic correlations and severely affects the formation of density waves and superconductivity. Our broadband infrared…

Strongly Correlated Electrons · Physics 2025-07-24 M. Wenzel , E. Uykur , A. A. Tsirlin , A. N Capa Salinas , B. R. Ortiz , S. D. Wilson , M. Dressel

Topological quantum materials with kagome lattices have attracted intense interest due to their unconventional electronic structures, which exhibit nontrivial topology, anomalous magnetism, and electronic correlations. Among these, Co3Sn2S2…

Strongly Correlated Electrons · Physics 2025-08-18 Guowei Liu , Wei Song , Titus Neupert , M. Zahid Hasan , Hanbin Deng , Jia-Xin Yin

Kagome metals present a fascinating platform of quantum phases thanks to the interplay between the geometric frustration and strong electron correlation. Here, we propose the emergence of the electric odd-parity bond order (BO) that…

Strongly Correlated Electrons · Physics 2025-03-30 Jianxin Huang , Youichi Yamakawa , Rina Tazai , Takahiro Morimoto , Hiroshi Kontani

We observed quantum oscillations in thermoelectric and magnetic torque signals in non-centrosymmetric superconductor PbTaSe$_2$. One oscillatory frequency stems from the orbits formed by magnetic breakdown, while others are from…

Superconductivity · Physics 2019-03-28 Xitong Xu , Zhibo Kang , Tay-Rong Chang , Hsin Lin , Guang Bian , Zhujun Yuan , Zhe Qu , Jinglei Zhang , Shuang Jia

Recently, the Kagome metal CsTi$_3$Bi$_5$ has exhibited several novel quantum properties similar to CsV$_3$Sb$_5$, such as nontrivial topology, double-dome superconductivity, and flat band features. However, CsTi$_3$Bi$_5$ lacks the…

Superconductivity · Physics 2024-03-26 Wenfeng Wu , Xiaocheng Bai , Xianlong Wang , Dayong Liu , Zhi Zeng , Liangjian Zou

Layered kagome-lattice materials with 3$d$ transition metals provide a fertile playground for studies on geometry frustration, band topology and other novel ordered states. A representative class of materials AV$_3$Sb$_5$ (A=K, Rb, Cs) have…

Kagome metals have established a new arena for correlated electron physics. To date, the predominant experimental evidence centers around unconventional charge order, nematicity, and superconductivity, while magnetic fluctuations due to…

The recently discovered ATi$_3$Bi$_5$ (A=Cs, Rb) exhibit intriguing quantum phenomena including superconductivity, electronic nematicity, and abundant topological states, which provide promising platforms for studying kagome…

Superconductivity · Physics 2023-10-31 Xin-Wei Yi , Zheng-Wei Liao , Jing-Yang You , Bo Gu , Gang Su
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