We study a model of an equal mixture of two species of fermions in a deep optical lattice at a filling of two fermions per site. At weak interspecies interaction, the system is a band insulator. When the interspecies interaction is tuned via a Feshbach resonance to be larger than an energy related to the energy separation of the first and second Bloch bands, atoms populate equally the two Bloch bands. With weak tunneling between sites of the optical lattice, the system becomes a Mott insulator with the low-energy effective Hamiltonian of a spin-1 Heisenberg antiferromagnet, because of a Hund's-rule-like coupling between the two bands. We discuss experimental signatures of these two types of insulators
In this thesis we explore different aspects of the physics of multi-species atomic systems in optica...
Ground-state properties of fermionic mixtures confined in a one-dimensional optical lattice are stu...
This thesis reports on the creation and analysis of many-body states of interacting fermionic atoms ...
We study a model of an equal mixture of two species of fermions in a deep optical lattice at a filli...
We show that recent high-precision measurements of relative on-site interaction energies $\Delta U$ ...
We study the phase diagram of ultracold bosons in an optical lattice near a Feshbach resonance. Depe...
We prepare and study a metastable attractive Mott-insulator state formed with bosonic atoms in a thr...
"Based on the consideration of the system symmetry and its Hilbert space, we show that strongly inte...
This dissertation summarizes my recent work regarding systems of strongly interacting fermionic atom...
Ultracold atomic gas experiments have proven to be a versatile ground for studying quantum mechanics...
An important new development in the field of ultracold atomic gases is the study of the properties ...
This chapter gives an introduction to the physics of interacting quantum systems, both bosonic and f...
We have studied a system of ultracold fermionic potassium (40K) atoms in a three-dimensional (3D) op...
We investigate a system of fermions on a two-dimensional optical square lattice in the strongly repu...
Abstract. We study a system of ultracold fermionic Potassium (40K) atoms in a three-dimensional opti...
In this thesis we explore different aspects of the physics of multi-species atomic systems in optica...
Ground-state properties of fermionic mixtures confined in a one-dimensional optical lattice are stu...
This thesis reports on the creation and analysis of many-body states of interacting fermionic atoms ...
We study a model of an equal mixture of two species of fermions in a deep optical lattice at a filli...
We show that recent high-precision measurements of relative on-site interaction energies $\Delta U$ ...
We study the phase diagram of ultracold bosons in an optical lattice near a Feshbach resonance. Depe...
We prepare and study a metastable attractive Mott-insulator state formed with bosonic atoms in a thr...
"Based on the consideration of the system symmetry and its Hilbert space, we show that strongly inte...
This dissertation summarizes my recent work regarding systems of strongly interacting fermionic atom...
Ultracold atomic gas experiments have proven to be a versatile ground for studying quantum mechanics...
An important new development in the field of ultracold atomic gases is the study of the properties ...
This chapter gives an introduction to the physics of interacting quantum systems, both bosonic and f...
We have studied a system of ultracold fermionic potassium (40K) atoms in a three-dimensional (3D) op...
We investigate a system of fermions on a two-dimensional optical square lattice in the strongly repu...
Abstract. We study a system of ultracold fermionic Potassium (40K) atoms in a three-dimensional opti...
In this thesis we explore different aspects of the physics of multi-species atomic systems in optica...
Ground-state properties of fermionic mixtures confined in a one-dimensional optical lattice are stu...
This thesis reports on the creation and analysis of many-body states of interacting fermionic atoms ...