4 pages, 3 figuresWe show that the study of the collective oscillations in a harmonic trap provides a very sensitive test of the equation of state of a Fermi gas near a Feshbach resonance. Using a scaling approach, whose high accuracy is proven by comparison with exact hydrodynamic solutions, the frequencies of the lowest compressional modes are calculated at T=0 in terms of a dimensionless parameter characterizing the equation of state. The predictions for the collective frequencies, obtained from the equations of state of mean field BCS theory and of recent Monte-Carlo calculations, are discussed in detail
We present a theoretical study of the collective excitations of a trapped imbalanced fermion gas at ...
We investigate the zero-temperature properties of a dilute two-component Fermi gas with attractive i...
We theoretically study the collective excitations of an ideal gas confined in an isotropic harmonic ...
The frequencies of the collective oscillations of a harmonically trapped Fermi gas interacting with ...
We investigate the zero-temperature properties of a dilute two-component Fermi gas with attractive i...
We evaluate the frequencies of collective modes and the anisotropic expansion rate of a harmonically...
We suggest that collective oscillation frequencies of cold trapped gases can be used as high precisi...
Phase diagrams and collective excitations are investigated for a trapped imbalanced Fermi gas in two...
Phase diagrams and collective excitations are investigated for a trapped imbalanced Fermi gas in two...
Dynamics of strongly interacting trapped dilute Fermi gases is investigated at zero temperature. As ...
We study collective excitations of a trapped Fermi gas at finite temperature using the Bogoliubov–de...
\u3cp\u3ePhase diagrams and collective excitations are investigated for a trapped imbalanced Fermi g...
We investigate the zero-temperature properties of a dilute two-component Fermi gas with attractive i...
We study the relationship between Tan's contact parameter and the macroscopic dynamic properties of ...
We present a theoretical study of the collective excitations of a trapped imbalanced fermion gas at ...
We present a theoretical study of the collective excitations of a trapped imbalanced fermion gas at ...
We investigate the zero-temperature properties of a dilute two-component Fermi gas with attractive i...
We theoretically study the collective excitations of an ideal gas confined in an isotropic harmonic ...
The frequencies of the collective oscillations of a harmonically trapped Fermi gas interacting with ...
We investigate the zero-temperature properties of a dilute two-component Fermi gas with attractive i...
We evaluate the frequencies of collective modes and the anisotropic expansion rate of a harmonically...
We suggest that collective oscillation frequencies of cold trapped gases can be used as high precisi...
Phase diagrams and collective excitations are investigated for a trapped imbalanced Fermi gas in two...
Phase diagrams and collective excitations are investigated for a trapped imbalanced Fermi gas in two...
Dynamics of strongly interacting trapped dilute Fermi gases is investigated at zero temperature. As ...
We study collective excitations of a trapped Fermi gas at finite temperature using the Bogoliubov–de...
\u3cp\u3ePhase diagrams and collective excitations are investigated for a trapped imbalanced Fermi g...
We investigate the zero-temperature properties of a dilute two-component Fermi gas with attractive i...
We study the relationship between Tan's contact parameter and the macroscopic dynamic properties of ...
We present a theoretical study of the collective excitations of a trapped imbalanced fermion gas at ...
We present a theoretical study of the collective excitations of a trapped imbalanced fermion gas at ...
We investigate the zero-temperature properties of a dilute two-component Fermi gas with attractive i...
We theoretically study the collective excitations of an ideal gas confined in an isotropic harmonic ...