English
Related papers

Related papers: Intriguing kagome topological materials

200 papers

Flat bands amplify correlation effects and are of extensive current interest. They provide a platform to explore both topology in correlated settings and correlation physics enriched by topology. Recent experiments in correlated kagome…

Strongly Correlated Electrons · Physics 2023-07-31 Haoyu Hu , Qimiao Si

We study the edge state properties of a two-dimensional kagome lattice using a tight-binding approach, focusing on the role of lattice termination, spin-orbit coupling, and magnetic order. In the pristine limit, we show that the existence…

Materials Science · Physics 2026-02-13 Sajid Sekh , Annica M. Black-Schaffer , Andrzej Ptok

Exotic quantum order in kagome metals, i.e., quantum materials with a Fermi liquid parent state of electrons on a kagome lattice, has appeared as a vibrant emerging field of condensed matter physics. Already in a small kagome material…

Strongly Correlated Electrons · Physics 2024-11-06 Francesco Grandi , Ronny Thomale , Dante M. Kennes

Quantum simulators are an essential tool for understanding complex quantum materials. Platforms based on ultracold atoms in optical lattices and photonic devices led the field so far, but electronic quantum simulators are proving to be…

Mesoscale and Nanoscale Physics · Physics 2019-11-25 S. N. Kempkes , M. R. Slot , J. J. van den Broeke , P. Capiod , W. A. Benalcazar , D. Vanmaekelbergh , D. Bercioux , I. Swart , C. Morais Smith

A Kagome lattice, formed by triangles of two different directions, is known to have many emergent quantum phenomena. Under the breathing anisotropy of bond strengths, this lattice can become a higher-order topological insulator (HOTI),…

Mesoscale and Nanoscale Physics · Physics 2022-02-24 Jun Jung , Yong-Hyun Kim

Geometric frustration of magnetic ions can lead to a quantum spin liquid ground state where long range magnetic order is avoided despite strong exchange interactions. The physical realization of quantum spin liquids comprises a major…

Strongly Correlated Electrons · Physics 2023-06-07 Alex Hallett , Catalina Avarvarei , John W. Harter

The kagome lattice is renowned for its exotic electronic properties, such as flat bands, Dirac points, and Van Hove singularities. These features have provided a fertile ground for exploring exotic quantum phenomena. Here, we discover that…

Mesoscale and Nanoscale Physics · Physics 2025-09-22 Shun-Peng Zhang , Ming-Jian Gao , Wei Jia , Jun-Hong An

Kagome magnet has been found to be a fertile ground for the search of exotic quantum states in condensed matter. Arising from the unusual geometry, the quantum interactions in the kagome lattice give rise to various quantum states,…

Strongly Correlated Electrons · Physics 2023-10-31 Xitong Xu , Jia-Xin Yin , Zhe Qu , Shuang Jia

Topological magnon is a vibrant research field gaining more and more attention in the past few years. Among many theoretical proposals and limited experimental studies, ferromagnetic Kagome lattice emerges as one of the most elucidating…

Strongly Correlated Electrons · Physics 2020-04-16 H. Zhang , X. Feng , T. Heitmann , A. I. Kolesnikov , M. B. Stone , Y. -M. Lu , X. Ke

CsV3Sb5 kagome lattice holds the promise for manifesting electron correlation, topology and superconducting. However, by far only three CsV3Sb5-like kagome materials have been experimentally spotted. In this work, we enlarge this family of…

Materials Science · Physics 2022-03-15 Yutao Jiang , Ze Yu , Yuxin Wang , Tenglong Lu , Sheng Meng , Kun Jiang , Miao Liu

Two-dimensional (2D) metallic lattices with kagome topology provide a unique platform for exploring the interplay between geometric frustration, reduced coordination, and lattice stability in elemental systems. Motivated by the recent…

Topological materials hosting kagome lattices have drawn considerable attention due to the interplay between topology, magnetism, and electronic correlations. The (Fe$_{1-x}$Co$_x$)Sn system not only hosts a kagome lattice but has a tunable…

Kagome lattice is a two-dimensional network of corner-sharing triangles and is often associated with geometrical frustration. In particular, the frustrated coupling between waveguide modes in a kagome array leads to a dispersionless flat…

Optics · Physics 2015-12-14 Gia-Wei Chern , Avadh Saxena

Since the discovery of topological modes in idealized ball-and-spring kagome lattices, significant efforts have been devoted to realizing mechanical analogues of these ideal lattices via practical fabrication techniques. While numerical and…

Applied Physics · Physics 2024-10-08 Weijian Jiao , Hang Shu , Vincent Tournat

Itinerant electrons in a two-dimensional Kagome lattice form a Dirac semi-metal, similar to graphene. When lattice and spin symmetries are broken by various periodic perturbations this semi-metal is shown to spawn interesting non-magnetic…

Mesoscale and Nanoscale Physics · Physics 2015-05-13 H. -M. Guo , M. Franz

We consider the potential for novel forms of magnetism arising from the subtle interplay between electrons and spins in the under-screened kagome Kondo lattice model. At weak coupling, we show that incommensurate non-coplanar multi-wave…

Strongly Correlated Electrons · Physics 2015-08-05 Shivam Ghosh , Patrick O' Brien , Christopher L. Henley , Michael J. Lawler

The kagome lattice -- a two-dimensional (2D) arrangement of corner-sharing triangles -- is at the forefront of the search for exotic states generated by magnetic frustration. Such states have been observed experimentally for Heisenberg and…

Flat bands and dispersive Dirac bands are known to coexist in the electronic bands in a two-dimensional kagome lattice. Including the relativistic spin-orbit coupling, such systems often exhibit nontrivial band topology, allowing for…

Strongly Correlated Electrons · Physics 2022-08-09 Satoshi Okamoto , Narayan Mohanta , Elbio Dagotto , D. N. Sheng

We theoretically study the topological properties of the tight-binding model on the breathing kagome lattice with antisymmetric spin-orbit coupling (SOC) between nearest neighbors. We show that the system hosts nontrivial topological phases…

Mesoscale and Nanoscale Physics · Physics 2019-04-29 Adrien Bolens , Naoto Nagaosa