We study a two-dimensional fermionic cloud of repulsive alkali-metal atoms characterized by two hyperfine states which are Rabi coupled. Within a variational Hartree-Fock scheme, we calculate analytically the ground-state energy of the system. Then we determine the conditions under which there is a quantum phase transition with spontaneous symmetry breaking from a spin-balanced configuration to a spin-polarized one, an effect known as itinerant ferromagnetism. Interestingly, we find that the transition appears when the interaction energy per particle exceedes both the kinetic energy per particle and the Rabi coupling energy. The itinerant ferromagnetism of the polarized phase is analyzed, obtaining the population imbalance as a function of ...
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
Using continuous-space quantum Monte Carlo methods, we investigate the zero-temperature ferroma...
Motivated by the remarkable experimental control of synthetic gauge fields in ultracold atomic syste...
We study a two-dimensional fermionic cloud of repulsive alkali-metal atoms characterized by two hyp...
We investigate the polarization of a two-component three-dimensional fermionic gas made of repulsive...
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
We theoretically investigate the itinerant ferromagnetic transition of a spherically trapped ultraco...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
The ground-state properties of the Hubbard chain with on-site repulsion and anisotropic nearest-neig...
We propose an experiment to explore the magnetic phase transitions in interacting fermionic Hubbard...
4noUsing a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturate...
We analyze the properties of a single impurity immersed in a Fermi sea. At positive energy...
We propose a scheme to realize the itinerant ferromagnetism of two-component cold fermionic atoms in...
We use microscopic many-body theory to analyze the problem of itinerant ferromagnetism in a repulsiv...
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
Using continuous-space quantum Monte Carlo methods, we investigate the zero-temperature ferroma...
Motivated by the remarkable experimental control of synthetic gauge fields in ultracold atomic syste...
We study a two-dimensional fermionic cloud of repulsive alkali-metal atoms characterized by two hyp...
We investigate the polarization of a two-component three-dimensional fermionic gas made of repulsive...
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
We theoretically investigate the itinerant ferromagnetic transition of a spherically trapped ultraco...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
The ground-state properties of the Hubbard chain with on-site repulsion and anisotropic nearest-neig...
We propose an experiment to explore the magnetic phase transitions in interacting fermionic Hubbard...
4noUsing a quantum Monte Carlo technique, we provide strong evidence for the stability of a saturate...
We analyze the properties of a single impurity immersed in a Fermi sea. At positive energy...
We propose a scheme to realize the itinerant ferromagnetism of two-component cold fermionic atoms in...
We use microscopic many-body theory to analyze the problem of itinerant ferromagnetism in a repulsiv...
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
Using continuous-space quantum Monte Carlo methods, we investigate the zero-temperature ferroma...
Motivated by the remarkable experimental control of synthetic gauge fields in ultracold atomic syste...