We investigate the magnetic shell structure of repulsively interacting two-component Fermi gases trapped in a two-dimensional harmonic potential and loaded on the optical Lieb lattices. We employ the real-space dynamical mean-field theory (R-DMFT) to explicitly consider the trap potential in a self-consistent way. Computing the profiles of particle density and local magnetization across the lattice sites in the trap, we find that the incompressible core with ferrimagnetic ordering appears with the density plateau at the trap center, which is surrounded by the shell of the normal metallic phase. We examine the incompressibility of the core by adding more particles and creating the higher spin-population imbalance. While the core area expands...
| openaire: EC/H2020/702281/EU//FLATOPSWe study the attractive Hubbard model with spin imbalance on ...
We investigate a two-dimensional system of fermions with two values of the internal (spin)...
The nature of strongly interacting Fermi gases and magnetism is one of the most important and studie...
We analyze the repulsive fermionic Hubbard model on square and cubic lattices with spin imbalance an...
We demonstrate that a two-dimensional (2D) optical lattice loaded with repulsive, contact-interactin...
Finite fermion systems are known to exhibit shell structure in the weakly interacting regime, as is ...
We investigate antiferromagnetic order of repulsively interacting fermionic atoms in an optical latt...
We study a model of a two-dimensional ultracold atomic gas subjected to an “optical flux lattice”: a...
Using continuous-space quantum Monte Carlo methods, we investigate the zero-temperature ferroma...
We theoretically investigate the itinerant ferromagnetic transition of a spherically trapped ultraco...
We study magnetic phases of two-component mixtures of ultracold fermions with repulsive interactions...
We study population imbalanced Fermi mixtures under quasi-two-dimensional confinement at zero temper...
We compare magnetism in two artificial lattice structures, a quantum dot array formed in a two-dimen...
The properties of a phase at finite interactions can be significantly influenced by the underlying d...
We study the magnetic ordering transition for a system of harmonically trapped ultracold fermions wi...
| openaire: EC/H2020/702281/EU//FLATOPSWe study the attractive Hubbard model with spin imbalance on ...
We investigate a two-dimensional system of fermions with two values of the internal (spin)...
The nature of strongly interacting Fermi gases and magnetism is one of the most important and studie...
We analyze the repulsive fermionic Hubbard model on square and cubic lattices with spin imbalance an...
We demonstrate that a two-dimensional (2D) optical lattice loaded with repulsive, contact-interactin...
Finite fermion systems are known to exhibit shell structure in the weakly interacting regime, as is ...
We investigate antiferromagnetic order of repulsively interacting fermionic atoms in an optical latt...
We study a model of a two-dimensional ultracold atomic gas subjected to an “optical flux lattice”: a...
Using continuous-space quantum Monte Carlo methods, we investigate the zero-temperature ferroma...
We theoretically investigate the itinerant ferromagnetic transition of a spherically trapped ultraco...
We study magnetic phases of two-component mixtures of ultracold fermions with repulsive interactions...
We study population imbalanced Fermi mixtures under quasi-two-dimensional confinement at zero temper...
We compare magnetism in two artificial lattice structures, a quantum dot array formed in a two-dimen...
The properties of a phase at finite interactions can be significantly influenced by the underlying d...
We study the magnetic ordering transition for a system of harmonically trapped ultracold fermions wi...
| openaire: EC/H2020/702281/EU//FLATOPSWe study the attractive Hubbard model with spin imbalance on ...
We investigate a two-dimensional system of fermions with two values of the internal (spin)...
The nature of strongly interacting Fermi gases and magnetism is one of the most important and studie...