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The pursuit of geometrically frustrated lattices beyond conventional paradigms remains a central challenge in the design of quantum materials. Herein, we report the discovery of Cs3V9Te13 (CVT), a novel intermetallic compound that hosts a…

Materials Science · Physics 2026-04-02 Yusen Xiao , Zhibin Qiu , Qingchen Duan , Zhaoyi Li , Hengxin Tan , Shu Guo , Ruidan Zhong

Kagome metals with van Hove singularities near the Fermi level can host intriguing quantum phenomena such as chiral loop currents, electronic nematicity, and unconventional superconductivity. However, to our best knowledge, unconventional…

The interesting properties of Kagome bands, consisting of Dirac bands and a flat band, have attracted extensive attention. However, the materials with only one Kagome band around the Fermi level cannot possess physical properties of Dirac…

Materials Science · Physics 2018-07-10 Sili Huang , Yuee Xie , Chengyong Zhong , Yuanping Chen

The magnetic behavior of the compound, Gd3Ru4Al12, which has been reported to crystallize in a hexagonal structure about two decades ago, had not been investigated in the past literature despite interesting structural features (that is,…

Strongly Correlated Electrons · Physics 2016-06-22 Venkatesh Chandragiri , Kartik K Iyer , E. V. Sampathkumaran

Kagome metals are reported to exhibit remarkable properties, including superconductivity, charge density wave order, and a large anomalous Hall conductivity, which facilitate the implementation of spintronic devices. In this work, we study…

Strongly Correlated Electrons · Physics 2024-01-12 Sobhit Singh , A. C. Garcia-Castro

The interplay of superconductivity with electronic and structural instabilities on the kagome lattice provides a fertile ground for the emergence of unusual phenomena. The vanadium-based kagome metals $A$V$_3$Sb$_5$ ($A=$ K, Rb, Cs) exhibit…

We investigate the structural and magnetic properties of BaNi$_3$(AsO$_4$)$_2$(OH)$_2$, focusing on its spin-1 kagome lattice and the intricate coexistence of ferromagnetic and antiferromagnetic interactions. Powder x-ray diffraction…

Strongly Correlated Electrons · Physics 2025-08-14 Yuya Haraguchi , Jun-ichi Yamaura , Akira Matsuo , Koichi Kindo , Hiroko Aruga Katori

The low temperature properties of the Kagome-type system Co3V2O8 have been studied by powder neutron diffraction both in zero field and in applied magnetic field of up to 8 T. Below 6 K, the zero-field ground state is ferromagnetic with the…

Materials Science · Physics 2007-05-23 N. R. Wilson , O. A. Petrenko , L. C. Chapon

Magnetic kagome metals have garnered considerable attention as an ideal platform for investigating intrinsic topological structures, frustrated magnetism, and electron correlation effects. In this work, we present the synthesis and detailed…

Materials Science · Physics 2025-05-07 Yusen Xiao , Qingchen Duan , Zhaoyi Li , Shu Guo , Hengxin Tan , Ruidan Zhong

The cascade of electronic phases in CsV$_3$Sb$_5$ raises the prospect to disentangle their mutual interactions in a clean, strongly interacting Kagome lattice. When the Kagome planes are stacked into a crystal, its electronic dimensionality…

Applying angle-resolved photoemission spectroscopy and density functional theory calculations, we present compelling spectroscopic evidence demonstrating the intertwining and mutual interaction between the Kondo and kagome sublattices in…

The two-dimensional kagome lattice is a paradigmatic platform for exploring geometrically frustrated magnetism. While the nearest-neighbor ferromagnetic Ising model on this lattice is theoretically trivial, competing further-neighbor…

Strongly Correlated Electrons · Physics 2026-05-26 Yixin Guan , Kan Zhao , Nvsen Ma

Alpha Fe2O3 powders have been prepared by the reduction reaction method with NaHB4 as reducing agent and followed a conventional sintering process. The XRD pattern with Rietveld refinement profile reveal that the prepared Fe2O3 with…

Materials Science · Physics 2020-09-22 Zhi Ma , Long Zhou , Xu Long Zhang , Hong Fei Liu , Huan Ming Chen , Fu Zheng , Hua Gao

Kagome magnets are expected to feature emergent properties due to the interplays among geometry, magnetism, electronic correlation, and band topology. The magnetism and topological electronic states can be tuned via the rare earth…

Strongly Correlated Electrons · Physics 2023-03-02 Xing Huang , Zhiqiang Cui , Chaoxin Huang , Mengwu Huo , Hui Liu , Jingyuan Li , Feixiang Liang , Lan Chen , Hualei Sun , Bing Shen , Yunwei Zhang , Meng Wang

The spin-1/2 kagome antiferromagnets are key prototype materials for studying frustrated magnetism. Three isostructural kagome antiferromagnets LnCu$_3$(OH)$_6$Cl$_3$ (Ln = Gd, Tb, Dy) have been successfully synthesized by the hydrothermal…

Strongly Correlated Electrons · Physics 2021-08-27 Ying Fu , Lianglong Huang , Xuefeng Zhou , Jian Chen , Xinyuan Zhang , Pengyun Chen , Shanmin Wang , Cai Liu , Dapeng Yu , Hai-Feng Li , Le Wang , Jia-Wei Mei

Mn3V2O8 is a magnetic system in which S = 5/2 Mn2+ is found in the kagome staircase lattice. Here we report the magnetic phase diagram for temperatures above 2 K and applied magnetic fields below 9 T, characterized by measurements of the…

Strongly Correlated Electrons · Physics 2007-05-23 E. Morosan , J. Fleitman , T. Klimczuk , R. J. Cava

The quantum kagome antiferromagnets YCu3(OH)6OxCl3-x (x=0,1/3) are produced using a unified solid state synthesis route for polycrystalline samples. From structural refinements based on neutron diffraction data, we clarify the structure of…

The kagome lattice provides a playground to explore novel correlated quantum states due to the presence of flat bands in its electronic structure. Recently discovered layered kagome compound Nb3Cl8 has been proposed as a Mott insulator…

In condensed matter physics, the Kagome lattice and its inherent flat bands have attracted considerable attention for their potential to host a variety of exotic physical phenomena. Despite extensive efforts to fabricate thin films of…

We have experimentally identified a new magnetic ground state for the kagome lattice, in the perfectly hexagonal Fe2+ (3d6, S = 2) compound Fe4Si2Sn7O16. Representational symmetry analysis of neutron diffraction data shows that below T_N =…

Strongly Correlated Electrons · Physics 2017-11-22 C. D. Ling , M. C. Allison , S. Schmid , M. Adveev , J. S. Gardner , C. -W. Wang , D. H. Ryan , M. Zbiri , T. Soehnel