Flat bands (FB) are strictly dispersionless bands in the Bloch spectrum of a periodic lattice Hamiltonian, recently observed in a variety of photonic and dissipative condensate networks. FB Hamiltonians are fine-tuned networks, still lacking a comprehensive generating principle.We introduce a FB generator based on local network properties. We classify FB networks through the properties of compact localized states (CLS) which are exact FB eigenstates and occupy U unit cells. We obtain the complete two-parameter FB family of two-band d = 1 networks with nearest unit cell interaction and U = 2. We discover a novel high symmetry sawtooth chain with identical hoppings in a transverse dc field, easily accessible in experiments. Our results pave t...
Photonic lattices have emerged as an ideal testbed for localizing light in space. Among others, the ...
We generate compact localized states in an electrical diamond lattice, comprised of only capacitors ...
We generate compact localized states in an electrical diamond lattice, comprised of only capacitors ...
The band structure of some translationally invariant lattice Hamiltonians contains strictly dispersi...
© 2021 American Physical Society.Dispersionless bands, flat bands, provide an excellent test bed for...
The flat band system is an ideal quantum platform to investigate the kaleidoscope created by the ele...
Macroscopically degenerate flat bands (FB) in periodic lattices host compact localized states which ...
We report the presence of multiple flat bands in a class of two-dimensional lattices formed by Sierp...
We investigate the origin of the ubiquitous existence of flat bands in the network superstructures o...
Certain tight binding lattices host macroscopically degenerate flat spectral bands. Their origin is ...
We present the appearance of nearly flat-band states with nonzero Chern numbers in a two-dimensional...
We analyze the spectrum and eigenstates of a quantum particle in a bipartite two-dimensional tight-b...
Sinusoidal Bloch oscillations appear in band structures exposed to external fields. Landau-Zener (LZ...
Photonic lattices have emerged as an ideal testbed for localizing light in space. Among others, the ...
We derive symmetry-based conditions for tight-binding Hamiltonians with flatbands to have compact lo...
Photonic lattices have emerged as an ideal testbed for localizing light in space. Among others, the ...
We generate compact localized states in an electrical diamond lattice, comprised of only capacitors ...
We generate compact localized states in an electrical diamond lattice, comprised of only capacitors ...
The band structure of some translationally invariant lattice Hamiltonians contains strictly dispersi...
© 2021 American Physical Society.Dispersionless bands, flat bands, provide an excellent test bed for...
The flat band system is an ideal quantum platform to investigate the kaleidoscope created by the ele...
Macroscopically degenerate flat bands (FB) in periodic lattices host compact localized states which ...
We report the presence of multiple flat bands in a class of two-dimensional lattices formed by Sierp...
We investigate the origin of the ubiquitous existence of flat bands in the network superstructures o...
Certain tight binding lattices host macroscopically degenerate flat spectral bands. Their origin is ...
We present the appearance of nearly flat-band states with nonzero Chern numbers in a two-dimensional...
We analyze the spectrum and eigenstates of a quantum particle in a bipartite two-dimensional tight-b...
Sinusoidal Bloch oscillations appear in band structures exposed to external fields. Landau-Zener (LZ...
Photonic lattices have emerged as an ideal testbed for localizing light in space. Among others, the ...
We derive symmetry-based conditions for tight-binding Hamiltonians with flatbands to have compact lo...
Photonic lattices have emerged as an ideal testbed for localizing light in space. Among others, the ...
We generate compact localized states in an electrical diamond lattice, comprised of only capacitors ...
We generate compact localized states in an electrical diamond lattice, comprised of only capacitors ...