Interacting two-component Fermi gases loaded in a one-dimensional (1D) lattice and subjected to a harmonic trapping potential exhibit interesting compound phases in which fluid regions coexist with local Mott-insulator and/or band-insulator regions. Motivated by experiments on cold atoms inside disordered optical lattices, we present a theoretical study of the effects of a correlated random potential on these ground-state phases. We employ a lattice version of density-functional theory within the local-density approximation to determine the density distribution of fermions in these phases. The exchange-correlation potential is obtained from the Lieb-Wu exact solution of Fermi-Hubbard model. On-site disorder (with and without Gaussian correl...
We use numerical simulation to study ultracold, quantum degenerate, atomic gases. In the first part ...
We use quantum Monte Carlo simulations with the worm algorithm to study the phase diagram of a two-...
We investigate the zero-temperature ferromagnetic behavior of a two-component repulsive Fermi gas in...
Interacting two-component Fermi gases loaded in a one-dimensional (1D) lattice and subjected to a ha...
Interacting two-component Fermi gases loaded in a one-dimensional (1D) lattice and subject to harmon...
With recent advances in the field of ultra cold atoms one can, by trapping atoms at low temperatures...
We have theoretically studied the effect of disorder on ultracold alkaline-earth atoms governed by t...
We have theoretically studied the effect of disorder on ultracold alkaline-earth atoms gov...
The study of the disordered Bose-Hubbard model is key to understanding the interplay of disorder and...
Ultracold fermionic atoms in a disordered optical lattice can realize the disordered Fermi-Hubbard m...
The study of the disordered Bose-Hubbard model is key to understanding the interplay of disorder and...
We study the Anderson localization of atomic gases exposed to simple-cubic optical lattices with a s...
We study the Anderson localization of atomic gases exposed to simple-cubic optical lattices with a s...
We use numerical simulation to study ultracold, quantum degenerate, atomic gases. In the first part ...
We study interacting one-dimensional two-component mixtures of cold atoms in a random potential, and...
We use numerical simulation to study ultracold, quantum degenerate, atomic gases. In the first part ...
We use quantum Monte Carlo simulations with the worm algorithm to study the phase diagram of a two-...
We investigate the zero-temperature ferromagnetic behavior of a two-component repulsive Fermi gas in...
Interacting two-component Fermi gases loaded in a one-dimensional (1D) lattice and subjected to a ha...
Interacting two-component Fermi gases loaded in a one-dimensional (1D) lattice and subject to harmon...
With recent advances in the field of ultra cold atoms one can, by trapping atoms at low temperatures...
We have theoretically studied the effect of disorder on ultracold alkaline-earth atoms governed by t...
We have theoretically studied the effect of disorder on ultracold alkaline-earth atoms gov...
The study of the disordered Bose-Hubbard model is key to understanding the interplay of disorder and...
Ultracold fermionic atoms in a disordered optical lattice can realize the disordered Fermi-Hubbard m...
The study of the disordered Bose-Hubbard model is key to understanding the interplay of disorder and...
We study the Anderson localization of atomic gases exposed to simple-cubic optical lattices with a s...
We study the Anderson localization of atomic gases exposed to simple-cubic optical lattices with a s...
We use numerical simulation to study ultracold, quantum degenerate, atomic gases. In the first part ...
We study interacting one-dimensional two-component mixtures of cold atoms in a random potential, and...
We use numerical simulation to study ultracold, quantum degenerate, atomic gases. In the first part ...
We use quantum Monte Carlo simulations with the worm algorithm to study the phase diagram of a two-...
We investigate the zero-temperature ferromagnetic behavior of a two-component repulsive Fermi gas in...