We investigate magnetic orderings on kagome lattice numerically from the tight-binding Hamiltonian of electrons, governed by the filling factor and spin-orbit coupling (SOC) of electrons. We find that even a simple kagome lattice model can host both ferromagnetic and noncollinear antiferromagnetic orderings depending on the electron filling, reflecting gap structures in the Dirac and flat bands characteristic to the kagome lattice. Kane--Mele- or Rashba-type SOC tends to stabilize noncollinear orderings, such as magnetic spirals and 120-degree antiferromagnetic orderings, due to the effective Dzyaloshinskii--Moriya interaction from SOC. The obtained phase structure helps qualitative understanding of magnetic orderings in various kagome-laye...
Motivated by recent experiments on Cs$_2$Cu$_3$SnF$_{12}$ and YCu$_{3}$(OH)$_{6}$Cl$_{3}$, we consid...
Kagome lattice materials are an important platform for highly frustrated magnetism as well as for a ...
Kagome lattice materials are an important platform for highly frustrated magnetism as well as for a ...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge order, ...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
The ground state of the simple Heisenberg nearest-neighbor quantum kagome antiferromagnetic model is...
Topological materials hosting kagome lattices have drawn considerable attention due to the interplay...
A hallmark of strongly correlated quantum materials is the rich phase diagram resulting from competi...
We consider the Kondo-lattice model on the kagome lattice and study its weak-coupling instabilities ...
The V-based kagome systems AV3Sb5 (A = Cs, Rb and K) are unique by virtue of the intricate interplay...
Rare-earth engineering is an effective way to introduce and tune the magnetism in topological Kagome...
Motivated by recent experiments on Cs$_2$Cu$_3$SnF$_{12}$ and YCu$_{3}$(OH)$_{6}$Cl$_{3}$, we consid...
Kagome lattice materials are an important platform for highly frustrated magnetism as well as for a ...
Kagome lattice materials are an important platform for highly frustrated magnetism as well as for a ...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge order, ...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
The ground state of the simple Heisenberg nearest-neighbor quantum kagome antiferromagnetic model is...
Topological materials hosting kagome lattices have drawn considerable attention due to the interplay...
A hallmark of strongly correlated quantum materials is the rich phase diagram resulting from competi...
We consider the Kondo-lattice model on the kagome lattice and study its weak-coupling instabilities ...
The V-based kagome systems AV3Sb5 (A = Cs, Rb and K) are unique by virtue of the intricate interplay...
Rare-earth engineering is an effective way to introduce and tune the magnetism in topological Kagome...
Motivated by recent experiments on Cs$_2$Cu$_3$SnF$_{12}$ and YCu$_{3}$(OH)$_{6}$Cl$_{3}$, we consid...
Kagome lattice materials are an important platform for highly frustrated magnetism as well as for a ...
Kagome lattice materials are an important platform for highly frustrated magnetism as well as for a ...