Materials with zero energy band gap display intriguing properties including high sensitivity of the electronic band structure to external stimulus such as pressure or magnetic field. An interesting candidate for zero energy band gap are Weyl nodes at the Fermi level EF. A prerequisite for the existence of Weyl nodes is to either have inversion or time reversal symmetry broken. Weyl nodes in systems with broken time reversal symmetry are ideal to realize the tunability of the electronic band structure by magnetic field. Theoretically, it has been shown that in ferromagnetic Weyl materials, the band structure is dependent upon the magnetization direction and thus the electronic bands can be tuned by controlling the magnetization direction. He...
Finding stimuli capable of driving an imbalance of spin-polarised electrons within a solid is the ce...
Time-reversal-symmetry-breaking Weyl semimetals (WSMs) have attracted great attention recently becau...
On the basis of density functional theory calculations we predict Weyl points in rhombohedral struct...
Topological materials hosting kagome lattices have drawn considerable attention due to the interplay...
Kagome lattices host flat bands due to their frustrated lattice geometry, which leads to destructive...
The material class of kagome metals has rapidly grown and has been established as a field to explore...
Among condensed matter systems, Mott insulators exhibit diverse properties that emerge from electron...
Kagome-lattice magnets $R$Mn$_6$Sn$_6$ recently emerged as a new platform to exploit the interplay b...
Kagome-lattice magnets $R$Mn$_6$Sn$_6$ recently emerged as a new platform to exploit the interplay b...
Journal ArticleWe extend Nagaoka's study of the ferromagnetism of nearly half-filled bands in the in...
Systems with flat bands are ideal for studying strongly correlated electronic states and related phe...
The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry ...
Topological Weyl semimetals have recently attracted considerable attention among materials scientist...
We study an unique form of metallic ferromagnetism in which orbital moments surpasses the role of sp...
We investigate magnetic orderings on kagome lattice numerically from the tight-binding Hamiltonian o...
Finding stimuli capable of driving an imbalance of spin-polarised electrons within a solid is the ce...
Time-reversal-symmetry-breaking Weyl semimetals (WSMs) have attracted great attention recently becau...
On the basis of density functional theory calculations we predict Weyl points in rhombohedral struct...
Topological materials hosting kagome lattices have drawn considerable attention due to the interplay...
Kagome lattices host flat bands due to their frustrated lattice geometry, which leads to destructive...
The material class of kagome metals has rapidly grown and has been established as a field to explore...
Among condensed matter systems, Mott insulators exhibit diverse properties that emerge from electron...
Kagome-lattice magnets $R$Mn$_6$Sn$_6$ recently emerged as a new platform to exploit the interplay b...
Kagome-lattice magnets $R$Mn$_6$Sn$_6$ recently emerged as a new platform to exploit the interplay b...
Journal ArticleWe extend Nagaoka's study of the ferromagnetism of nearly half-filled bands in the in...
Systems with flat bands are ideal for studying strongly correlated electronic states and related phe...
The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry ...
Topological Weyl semimetals have recently attracted considerable attention among materials scientist...
We study an unique form of metallic ferromagnetism in which orbital moments surpasses the role of sp...
We investigate magnetic orderings on kagome lattice numerically from the tight-binding Hamiltonian o...
Finding stimuli capable of driving an imbalance of spin-polarised electrons within a solid is the ce...
Time-reversal-symmetry-breaking Weyl semimetals (WSMs) have attracted great attention recently becau...
On the basis of density functional theory calculations we predict Weyl points in rhombohedral struct...