Flat bands are an ideal environment to realize unconventional electronic phases. Here, we show that fermionic systems with dissipation governed by a Bloch Lindbladian can realize dispersionless bands for sufficiently strong coupling to an appropriately engineered bath. These flat bands emerge in a "dark space" of the system-environment coupling and are long-lived by virtue of symmetry protection from dissipation. We exhibit the robustness of this mechanism for general one and two band models with and without spin, and discuss conditions for their experimental realization such as in a 2D material on a superconducting substrate.Comment: 5+9 pages, 2 figure
The paper shows the results of theoretical research concerning the modeling and characterization of ...
Strathclyde theses - ask staff. Thesis no. : T15134Cold atom systems in optical lattices provide a p...
Motivated by the experimental progress in controlling the properties of the energy bands in supercon...
Motivated by the experimental progress in controlling the properties of the energy bands in supercon...
Certain lattice wave systems in translationally invariant settings have one or more spectral bands t...
Recent experimental advance in creating dissipative couplings provides a new route for engineering e...
Chiral symmetry plays an indispensable role in topological classifications as well as in the underst...
| openaire: EC/H2020/694248/EU//TOPVACWe discuss the recent extension of the Sachdev-Ye-Kitaev micro...
Flat bands-dispersionless bands-have been actively studied thanks to their sensitivity to perturbati...
In a partially filled flat Bloch band electrons do not have a well defined Fermi surface and hence t...
| openaire: EC/H2020/702281/EU//FLATOPSIn a flat Bloch band, the kinetic energy is quenched and sing...
We consider a ring of fermionic quantum sites, modeled by the Fermi-Hubbard Hamiltonian, in which el...
© 2021, The Author(s).According to the Onsager’s semiclassical quantization rule, the Landau levels ...
Abstract. When expressed in an adiabatic basis, the evolution operator of a generic system with a ti...
Dissipative state engineering is a general term for a protocol which prepares the ground state of a ...
The paper shows the results of theoretical research concerning the modeling and characterization of ...
Strathclyde theses - ask staff. Thesis no. : T15134Cold atom systems in optical lattices provide a p...
Motivated by the experimental progress in controlling the properties of the energy bands in supercon...
Motivated by the experimental progress in controlling the properties of the energy bands in supercon...
Certain lattice wave systems in translationally invariant settings have one or more spectral bands t...
Recent experimental advance in creating dissipative couplings provides a new route for engineering e...
Chiral symmetry plays an indispensable role in topological classifications as well as in the underst...
| openaire: EC/H2020/694248/EU//TOPVACWe discuss the recent extension of the Sachdev-Ye-Kitaev micro...
Flat bands-dispersionless bands-have been actively studied thanks to their sensitivity to perturbati...
In a partially filled flat Bloch band electrons do not have a well defined Fermi surface and hence t...
| openaire: EC/H2020/702281/EU//FLATOPSIn a flat Bloch band, the kinetic energy is quenched and sing...
We consider a ring of fermionic quantum sites, modeled by the Fermi-Hubbard Hamiltonian, in which el...
© 2021, The Author(s).According to the Onsager’s semiclassical quantization rule, the Landau levels ...
Abstract. When expressed in an adiabatic basis, the evolution operator of a generic system with a ti...
Dissipative state engineering is a general term for a protocol which prepares the ground state of a ...
The paper shows the results of theoretical research concerning the modeling and characterization of ...
Strathclyde theses - ask staff. Thesis no. : T15134Cold atom systems in optical lattices provide a p...
Motivated by the experimental progress in controlling the properties of the energy bands in supercon...