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Related papers: The kagom\'e metals RbTi$_3$Bi$_5$ and CsTi$_3$Bi$…

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Recent quantum oscillation experiments on the kagome metals CsTi$_3$Bi$_5$ and RbTi$_3$Bi$_5$ have revealed a puzzling phenomenon: despite possessing nearly identical band structures and Fermi surface geometries, they exhibit distinct…

Mesoscale and Nanoscale Physics · Physics 2026-04-07 Xinlong Du , Yuying Liu , Chao Wang , Long Zhang , Juntao Song

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

Fabrication of new types of superconductors with novel physical properties has always been a major thread in the research of superconducting materials. An example is the enormous interests generated by the cascade of correlated topological…

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…

Here we present the family of titanium-based kagome metals of the form LnTi$_3$Bi$_4$ (Ln: La...Gd$^{3+}$, Eu$^{2+}$, Yb$^{2+}$). Single crystal growth methods are presented alongside detailed magnetic and thermodynamic measurements. The…

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

We report electrical and thermal transport properties of single crystalline kagome metals $A$Ti$_3$Bi$_5$ ($A$ = Rb, Cs). Different from the structural similar kagome superconductors $A$V$_3$Sb$_5$, no charge density wave instabilities are…

Recently discovered alongside its sister compounds KV$_3$Sb$_5$ and RbV$_3$Sb$_5$, CsV$_3$Sb$_5$ crystallizes with an ideal kagome network of vanadium and antimonene layers separated by alkali metal ions. This work presents the electronic…

We report two new members of V-based kagome metals CsV$_{6}$Sb$_{6}$ and CsV$_{8}$Sb$_{12}$. The most striking structural feature of CsV$_{6}$Sb$_{6}$ is the V kagome bilayers. For CsV$_{8}$Sb$_{12}$, there is an intergrowth of…

Superconductivity · Physics 2021-11-24 Qiangwei Yin , Zhijun Tu , Chunsheng Gong , Shangjie Tian , Hechang Lei

We present high-pressure resistance measurements up to 40 GPa on recently discovered titanium-based kagome metal CsTi$_3$Bi$_5$. At ambient pressure, CsTi$_3$Bi$_5$ shows no evidence of superconductivity in resistivity and specific heat. By…

Superconductivity · Physics 2023-08-22 J. Y. Nie , X. F. Yang , X. Zhang , X. Q. Liu , W. Xia , D. Z. Dai , C. C. Zhao , C. P. Tu , X. M. Kong , X. B. Jin , Y. F. Guo , S. Y. Li

Here we report the observation of bulk superconductivity in single crystals of the two-dimensional kagome metal KV$_3$Sb$_5$. Magnetic susceptibility, resistivity, and heat capacity measurements reveal superconductivity below $T_c = 0.93$K,…

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 kagome material CsTi$_3$Bi$_5$, which is isostructural to the extensively studied charge density wave (CDW) compound CsV$_3$Sb$_5$, exhibits intriguing electronic features within its two-dimensional kagome lattices of titanium atoms.…

Strongly Correlated Electrons · Physics 2025-02-21 Liye Cao , Xiangqi Liu , Jiayi Cheng , Bixia Gao , Xiaoting Zhang , Yanfeng Guo , Fengjie Ma , Rongyan Chen

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

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

Kagome metals AV3Sb5 (A = K, Rb, and Cs) with a V-Kagome lattice acting as a fertile platform to investigate geometric frustration, electron correlation, superconductivity, and nontrivial band topology, have attracted tremendous attention.…

Superconductivity · Physics 2023-01-05 Ying Zhou , Long Chen , Xuecong Ji , Chen Liu , Ke Liao , Zhongnan Guo , Jia'ou Wang , Hongming Weng , Gang Wang

Kagome metal CsV$_3$Sb$_5$ has attracted much recent attention due to the coexistence of multiple exotic orders and the associated proposals to mimic unconventional high temperature superconductors. Nevertheless, magnetism and strong…

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…

Since the discovery of a new family of vanadium-based kagome superconductor AV3Sb5 (A=K, Rb, and Cs) with topological band structures, extensive effort has been devoted to exploring the origin of superconducting states and the intertwined…

Kagome magnets represent a promising class of materials that exhibit intriguing electronic and magnetic properties, and they have recently garnered significant attention. While most kagome-lattice compounds are hexagonal, we report here…

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