Recently, kagome materials have become an engrossing platform to study the interplay among symmetry, magnetism, topology, and electron correlation. The latest works on RMn6Sn6 (R = rare-earth metal) compounds have illustrated that this family could be intriguing to investigate various physical phenomena due to large spin-orbit coupling and strong magnetic ordering. However, combined transport and spectroscopic studies in RMn6Sn6 materials are still limited. Here, we report magnetic, magnetotransport, and angle-resolved photoemission spectroscopy measurements of a kagome magnet ErMn6Sn6 that undergoes antiferromagnetic (TN=345K) to ferrimagnetic (TC=68K) phase transitions in the presence of a field. We observe large anomalous and topological...
International audienceAbstract The magnon band topology due to the Dzyaloshinskii–Moriya interaction...
Topological insulators are insulators in the bulk but permit spin-polarized electrons to flow on the...
Two types of magnetic domains, that is, type-I domain belt domain and type-II new stripe domain, are...
Exploration of the topological quantum materials with electron correlation is at the frontier of phy...
Kagome magnets are believed to have numerous exotic physical properties due to the possible interpla...
Kagome magnet usually hosts nontrivial electronic or magnetic states drawing great interests in cond...
Kagome magnets are believed to have numerous exotic physical properties due to the possible interpla...
Magnetic topological phases of quantum matter are an emerging frontier in physics and materials scie...
Kagome-lattice magnets $R$Mn$_6$Sn$_6$ recently emerged as a new platform to exploit the interplay b...
Abstract Kagome magnets possess several novel nontrivial topological features owing to the strong co...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
The synthesis and characterization of the vanadium-based kagome metal TbV${_6}$Sn${_6}$ is presented...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
The Fermi surface (FS) is essential for understanding the properties of metals. It can change under ...
RV6Sn6 (R=rare earth) compounds are appealing materials platforms for exploring the interplay betwee...
International audienceAbstract The magnon band topology due to the Dzyaloshinskii–Moriya interaction...
Topological insulators are insulators in the bulk but permit spin-polarized electrons to flow on the...
Two types of magnetic domains, that is, type-I domain belt domain and type-II new stripe domain, are...
Exploration of the topological quantum materials with electron correlation is at the frontier of phy...
Kagome magnets are believed to have numerous exotic physical properties due to the possible interpla...
Kagome magnet usually hosts nontrivial electronic or magnetic states drawing great interests in cond...
Kagome magnets are believed to have numerous exotic physical properties due to the possible interpla...
Magnetic topological phases of quantum matter are an emerging frontier in physics and materials scie...
Kagome-lattice magnets $R$Mn$_6$Sn$_6$ recently emerged as a new platform to exploit the interplay b...
Abstract Kagome magnets possess several novel nontrivial topological features owing to the strong co...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
The synthesis and characterization of the vanadium-based kagome metal TbV${_6}$Sn${_6}$ is presented...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
The Fermi surface (FS) is essential for understanding the properties of metals. It can change under ...
RV6Sn6 (R=rare earth) compounds are appealing materials platforms for exploring the interplay betwee...
International audienceAbstract The magnon band topology due to the Dzyaloshinskii–Moriya interaction...
Topological insulators are insulators in the bulk but permit spin-polarized electrons to flow on the...
Two types of magnetic domains, that is, type-I domain belt domain and type-II new stripe domain, are...