Realizing and tuning novel electronic states is of great interest and importance to modern condensed-matter physics and spintronics applications. Transition-metal-based kagome materials are a rich frontier for the investigation of novel topological electronic states and correlated phenomena. The divergent density of states in the kagome lattice due to van Hove singularities (VHSs) in the vicinity of the Fermi level ($\textit{E${_F}$}$) also provide an ideal playground for the search of exotic correlated quantum states on a kagome lattice. However, in the idealized two-dimensional kagome lattice, topologically non-trivial Dirac surface states (TDSSs) have not been unambiguously observed, and the manipulation of TDSSs and VHSs remains largely...
Topological materials hosting kagome lattices have drawn considerable attention due to the interplay...
Topological semimetals are a frontier of quantum materials. In multi-band electronic systems, topolo...
The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry ...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
Kagome lattice composed of transition-metal ions provides a great opportunity to explore the intertw...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
Kagome materials have emerged as a setting for emergent electronic phenomena that encompass differen...
Kagome magnet TbMn$_6$Sn$_6$ is a new type of topological material that is known to support exotic q...
Topological insulators are insulators in the bulk but permit spin-polarized electrons to flow on the...
Kagome-lattice magnets $R$Mn$_6$Sn$_6$ recently emerged as a new platform to exploit the interplay b...
Due to the particularity of the lattice geometry, intriguing electronic characteristics of Dirac con...
Chirality, a fundamental structural property of crystals, can induce many unique topological quantum...
Funding: The research leading to these results has received funding from the European Union’s Horizo...
Exploration of the topological quantum materials with electron correlation is at the frontier of phy...
Topological materials hosting kagome lattices have drawn considerable attention due to the interplay...
Topological semimetals are a frontier of quantum materials. In multi-band electronic systems, topolo...
The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry ...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
Kagome lattice composed of transition-metal ions provides a great opportunity to explore the intertw...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
Kagome materials have emerged as a setting for emergent electronic phenomena that encompass differen...
Kagome magnet TbMn$_6$Sn$_6$ is a new type of topological material that is known to support exotic q...
Topological insulators are insulators in the bulk but permit spin-polarized electrons to flow on the...
Kagome-lattice magnets $R$Mn$_6$Sn$_6$ recently emerged as a new platform to exploit the interplay b...
Due to the particularity of the lattice geometry, intriguing electronic characteristics of Dirac con...
Chirality, a fundamental structural property of crystals, can induce many unique topological quantum...
Funding: The research leading to these results has received funding from the European Union’s Horizo...
Exploration of the topological quantum materials with electron correlation is at the frontier of phy...
Topological materials hosting kagome lattices have drawn considerable attention due to the interplay...
Topological semimetals are a frontier of quantum materials. In multi-band electronic systems, topolo...
The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry ...