We calculate level densities and pairing gaps for an ultracold dilute gas of fermionic atoms in harmonic traps under the influence of mean field and anharmonic quartic trap potentials. Supershell nodes, which were found in Hartree-Fock calculations, are calculated analytically within periodic orbit theory as well as from WKB calculations. For attractive interactions, the underlying level densities are crucial for pairing and supershell structures in gaps are predicted
We study the pairing of Fermi systems with long-range, confining interparticle interactions. We solv...
We use a BCS-type variational wave function to study attractively interacting quasi-one-dimensional ...
We present majority and minority radio frequency spectra of strongly interacting imbalanced Fermi ga...
We show that a dilute harmonically trapped two-component gas of fermionic atoms with a weak repulsiv...
It was recently shown in self-consistent Hartree-Fock calculations that a harmonically trapped dilut...
We study the phase separated state of an ultracold atomic Fermi gas confined in a three-dimensional ...
The problem of a two-component Fermi gas in a harmonic trap, with an imbalanced population and a pai...
We develop a consistent formalism in order to explore the effects of density and spin fluctuations o...
We study a three-component superfluid Fermi gas in a spherically symmetric harmonic trap using the B...
Recent advances in ultracold atomic Fermi gases make it possible to achieve a fermionic superfluid w...
We give an analysis, based on periodic orbit theory, of the super-shell structure observed in numeri...
The microscopic properties of few interacting cold fermionic atoms confined in a two-dimensional (2D...
We study the quench dynamics of a two-component ultracold Fermi gas from the weak into the strong in...
International audienceWithin the context of Hartree-Fock-Bogoliubov theory, we study the behavior of...
PTHWe investigate a gas of superfluid fermionic atoms trapped in two hyperfine states by a spherical...
We study the pairing of Fermi systems with long-range, confining interparticle interactions. We solv...
We use a BCS-type variational wave function to study attractively interacting quasi-one-dimensional ...
We present majority and minority radio frequency spectra of strongly interacting imbalanced Fermi ga...
We show that a dilute harmonically trapped two-component gas of fermionic atoms with a weak repulsiv...
It was recently shown in self-consistent Hartree-Fock calculations that a harmonically trapped dilut...
We study the phase separated state of an ultracold atomic Fermi gas confined in a three-dimensional ...
The problem of a two-component Fermi gas in a harmonic trap, with an imbalanced population and a pai...
We develop a consistent formalism in order to explore the effects of density and spin fluctuations o...
We study a three-component superfluid Fermi gas in a spherically symmetric harmonic trap using the B...
Recent advances in ultracold atomic Fermi gases make it possible to achieve a fermionic superfluid w...
We give an analysis, based on periodic orbit theory, of the super-shell structure observed in numeri...
The microscopic properties of few interacting cold fermionic atoms confined in a two-dimensional (2D...
We study the quench dynamics of a two-component ultracold Fermi gas from the weak into the strong in...
International audienceWithin the context of Hartree-Fock-Bogoliubov theory, we study the behavior of...
PTHWe investigate a gas of superfluid fermionic atoms trapped in two hyperfine states by a spherical...
We study the pairing of Fermi systems with long-range, confining interparticle interactions. We solv...
We use a BCS-type variational wave function to study attractively interacting quasi-one-dimensional ...
We present majority and minority radio frequency spectra of strongly interacting imbalanced Fermi ga...