The possibility to control short-ranged interactions of cold gases in optical traps by Feshbachresonances makes these systems ideal candidates to study universal scaling properties and Efimov physics. The spectrum of particles in a trap, idealised by a harmonic oscillator potential, in the zero range limit with 2- and 3-particle contact interactions is studied numerically. The Hamiltonian is regularised by restricting the oscillator basis and the coupling constants are tuned such that the ground state energies of the 2- and 3-particle sector are reproduced [1],[2]. Results for 2-, 3-, and 4 particle systems are presented and compared to exact results [3],[4]
Near a Feshbach resonance, cold atoms are strongly interacting because the scattering length diverge...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
Dynamics of strongly interacting trapped dilute Fermi gases is investigated at zero temperature. As ...
The possibility to control short-ranged interactions of cold gases in optical tr...
In contrast to conventional ideal Bose and Fermi degenerate gases, atoms in experimental ultracold g...
Ultracold atomic gases have been of great theoretical and experimental interest in the last two deca...
We study a three-body system with zero-range interactions in a one-dimensional harmonic trap. The sy...
We study a three-body system with zero-range interactions in a one-dimensional harmonic trap. The sy...
In this contribution we show applications of effective field theory (EFT) to few-particle systems tr...
We study systems of few two-component fermions interacting in a Harmonic Oscillator trap. The fermio...
We calculate the energy levels of two particles trapped in a harmonic potential. The actual two-body...
We examine a one-dimensional two-component fermionic system in a trap, assuming that all particles h...
Eigenstates of a particle in a localized and unconfined harmonic potential well are investigated. Ef...
We apply the general principles of effective field theories to the construction of effective interac...
Recent developments in experimental techniques have made it possible to use magnetic fields to tune ...
Near a Feshbach resonance, cold atoms are strongly interacting because the scattering length diverge...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
Dynamics of strongly interacting trapped dilute Fermi gases is investigated at zero temperature. As ...
The possibility to control short-ranged interactions of cold gases in optical tr...
In contrast to conventional ideal Bose and Fermi degenerate gases, atoms in experimental ultracold g...
Ultracold atomic gases have been of great theoretical and experimental interest in the last two deca...
We study a three-body system with zero-range interactions in a one-dimensional harmonic trap. The sy...
We study a three-body system with zero-range interactions in a one-dimensional harmonic trap. The sy...
In this contribution we show applications of effective field theory (EFT) to few-particle systems tr...
We study systems of few two-component fermions interacting in a Harmonic Oscillator trap. The fermio...
We calculate the energy levels of two particles trapped in a harmonic potential. The actual two-body...
We examine a one-dimensional two-component fermionic system in a trap, assuming that all particles h...
Eigenstates of a particle in a localized and unconfined harmonic potential well are investigated. Ef...
We apply the general principles of effective field theories to the construction of effective interac...
Recent developments in experimental techniques have made it possible to use magnetic fields to tune ...
Near a Feshbach resonance, cold atoms are strongly interacting because the scattering length diverge...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
Dynamics of strongly interacting trapped dilute Fermi gases is investigated at zero temperature. As ...