Abstract Quantum mechanics states that hopping integral between local orbitals makes the energy band dispersive. However, in some special cases, there are bands with no dispersion due to quantum interference. These bands are called as flat band. Many models having flat band have been proposed, and many interesting physical properties are predicted. However, no real compound having flat band has been found yet despite the 25 years of vigorous researches. We have found that some pyrochlore oxides have quasi-flat band just below the Fermi level by first principles calculation. Moreover, their valence bands are well described by a tight-binding model of pyrochlore lattice with isotropic nearest neighbor hopping integral. This model belongs to a...
International audienceDespite their dispersion-less character, flat bands (FBs) are often at the hea...
International audienceDespite their dispersion-less character, flat bands (FBs) are often at the hea...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
Topological electronic flattened bands near or at the Fermi level are a promising route towards unco...
Topological electronic flattened bands near or at the Fermi level are a promising route towards unco...
Topological electronic flatten bands near or at the Fermi level are a promising avenue towards uncon...
Certain lattice wave systems in translationally invariant settings have one or more spectral bands t...
In this work, we develop a systematic method of constructing flat-band models with and without band ...
The origin of many quantum-material phenomena is intimately related to the presence of flat electron...
Electronic correlation effects are manifested in quantum materials when either the onsite Coulomb re...
[[abstract]]The interplay of hopping parameters that can give rise to flat bands in consequence of q...
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...
A large number of recent works point to the emergence of intriguing analogs of fractional quantum Ha...
The origin of many quantum-material phenomena is intimately related to the presence of flat electron...
International audienceDespite their dispersion-less character, flat bands (FBs) are often at the hea...
International audienceDespite their dispersion-less character, flat bands (FBs) are often at the hea...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
Topological electronic flattened bands near or at the Fermi level are a promising route towards unco...
Topological electronic flattened bands near or at the Fermi level are a promising route towards unco...
Topological electronic flatten bands near or at the Fermi level are a promising avenue towards uncon...
Certain lattice wave systems in translationally invariant settings have one or more spectral bands t...
In this work, we develop a systematic method of constructing flat-band models with and without band ...
The origin of many quantum-material phenomena is intimately related to the presence of flat electron...
Electronic correlation effects are manifested in quantum materials when either the onsite Coulomb re...
[[abstract]]The interplay of hopping parameters that can give rise to flat bands in consequence of q...
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...
A large number of recent works point to the emergence of intriguing analogs of fractional quantum Ha...
The origin of many quantum-material phenomena is intimately related to the presence of flat electron...
International audienceDespite their dispersion-less character, flat bands (FBs) are often at the hea...
International audienceDespite their dispersion-less character, flat bands (FBs) are often at the hea...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...