The origin of many quantum-material phenomena is intimately related to the presence of flat electronic bands. In quantum simulation, such bands have been realized through line-graph lattices, a class of lattices known to exhibit flat bands. Based on that work, we conduct a high-throughput screening for line-graph lattices among the crystalline structures of the Materials Flatband Database and report on new candidates for line-graph materials and lattice models. In particular, we find materials with line-graph-lattice structures beyond the two most commonly known examples, the kagome and pyrochlore lattices. We also identify materials that may exhibit flat topological bands. Finally, we examine the various line-graph lattices detected and h...
Certain lattice wave systems in translationally invariant settings have one or more spectral bands t...
A general theoretical technique is introduced to identify materials that host flat bands. Applying t...
Flat-band systems have attracted considerable interest in different branches of physics in the past ...
The origin of many quantum-material phenomena is intimately related to the presence of flat electron...
Topological electronic flattened bands near or at the Fermi level are a promising route towards unco...
[[abstract]]The interplay of hopping parameters that can give rise to flat bands in consequence of q...
Topological electronic flatten bands near or at the Fermi level are a promising avenue towards uncon...
Topological electronic flattened bands near or at the Fermi level are a promising route towards unco...
Exotic phases of matter emerge from the interplay between strong electron interactions and non-trivi...
Exotic phases of matter emerge from the interplay between strong electron interactions and non-trivi...
Abstract Quantum mechanics states that hopping integral between local orbitals makes the energy band...
The experimental realization of lattice-born flat bands with nontrivial topology has been elusive. H...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
© 2020 Daohong Song, Zhigang Chen et al., published by De Gruyter, Berlin/Boston 2020.Flat-band syst...
Certain lattice wave systems in translationally invariant settings have one or more spectral bands t...
A general theoretical technique is introduced to identify materials that host flat bands. Applying t...
Flat-band systems have attracted considerable interest in different branches of physics in the past ...
The origin of many quantum-material phenomena is intimately related to the presence of flat electron...
Topological electronic flattened bands near or at the Fermi level are a promising route towards unco...
[[abstract]]The interplay of hopping parameters that can give rise to flat bands in consequence of q...
Topological electronic flatten bands near or at the Fermi level are a promising avenue towards uncon...
Topological electronic flattened bands near or at the Fermi level are a promising route towards unco...
Exotic phases of matter emerge from the interplay between strong electron interactions and non-trivi...
Exotic phases of matter emerge from the interplay between strong electron interactions and non-trivi...
Abstract Quantum mechanics states that hopping integral between local orbitals makes the energy band...
The experimental realization of lattice-born flat bands with nontrivial topology has been elusive. H...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
© 2020 Daohong Song, Zhigang Chen et al., published by De Gruyter, Berlin/Boston 2020.Flat-band syst...
Certain lattice wave systems in translationally invariant settings have one or more spectral bands t...
A general theoretical technique is introduced to identify materials that host flat bands. Applying t...
Flat-band systems have attracted considerable interest in different branches of physics in the past ...