Certain lattice wave systems in translationally invariant settings have one or more spectral bands that are strictly flat or independent of momentum in the tight binding approximation, arising from either internal symmetries or fine-tuned coupling. These flat bands display remarkable strongly interacting phases of matter. Originally considered as a theoretical convenience useful for obtaining exact analytical solutions of ferromagnetism, flat bands have now been observed in a variety of settings, ranging from electronic systems to ultracold atomic gases and photonic devices. Here we review the design and implementation of flat bands and chart future directions of this exciting field
Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerge...
Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerge...
Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerge...
Certain lattice wave systems in translationally invariant settings have one or more spectral bands t...
© 2020 Daohong Song, Zhigang Chen et al., published by De Gruyter, Berlin/Boston 2020.Flat-band syst...
During the last decades, researchers of different scientific areas have investigated several systems...
Flat-band systems have attracted considerable interest in different branches of physics in the past ...
[[abstract]]The interplay of hopping parameters that can give rise to flat bands in consequence of q...
Abstract Quantum mechanics states that hopping integral between local orbitals makes the energy band...
In this work, we develop a systematic method of constructing flat-band models with and without band ...
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...
Flatbands are receiving increasing theoretical and experimental attention in the field of photonics,...
Linear wave equations on Hamiltonian lattices with translational invariance are characterized by an ...
© 2021 American Physical Society.Dispersionless bands, flat bands, provide an excellent test bed for...
Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerge...
Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerge...
Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerge...
Certain lattice wave systems in translationally invariant settings have one or more spectral bands t...
© 2020 Daohong Song, Zhigang Chen et al., published by De Gruyter, Berlin/Boston 2020.Flat-band syst...
During the last decades, researchers of different scientific areas have investigated several systems...
Flat-band systems have attracted considerable interest in different branches of physics in the past ...
[[abstract]]The interplay of hopping parameters that can give rise to flat bands in consequence of q...
Abstract Quantum mechanics states that hopping integral between local orbitals makes the energy band...
In this work, we develop a systematic method of constructing flat-band models with and without band ...
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...
Flatbands are receiving increasing theoretical and experimental attention in the field of photonics,...
Linear wave equations on Hamiltonian lattices with translational invariance are characterized by an ...
© 2021 American Physical Society.Dispersionless bands, flat bands, provide an excellent test bed for...
Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerge...
Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerge...
Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerge...