Recent advances in ultracold atomic Fermi gases make it possible to achieve a fermionic superfluid with multiple spin components. In this context, any mean-field description is expected to fail, owing to the presence of tightly bound clusters or molecules that consist of more than two particles. Here we present a detailed study of a strongly interacting multicomponent Fermi gas in a highly elongated or quasi-one-dimensional harmonic trap, which could be readily obtained in experiment. By using the exact Bethe ansatz solution and a local density approximation treatment of the harmonic trap, we investigate the equation of state of the multicomponent Fermi gas in both a homogeneous and trapped environment, as well as the density profiles and l...
In this thesis, we discuss ultracold quantum gases both in continuum and optical lattices. For the c...
We explore the phase diagram of a two-component ultracold atomic Fermi gas interacting with zero-ran...
We investigate many-body phase diagrams of atomic boson-fermion mixtures loaded in the two-dimension...
A one-dimensional world is very unusual as there is an interplay between quantum statistics and geom...
We study the interplay between superfluidity and magnetism in a multicomponent gas of ultracold ferm...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
In ultracold Fermi gases, the spatial dimension and the number of particles involved in interactions...
The emergence of many-body physical phenomena from the quantum mechanical properties of atoms can be...
Strongly interacting gases of ultracold fermions have become an amazingly rich test-bed for many-bod...
We report on the creation of homogeneous Fermi gases of ultracold atoms in a uniform potential. In t...
We study a three-component superfluid Fermi gas in a spherically symmetric harmonic trap using the B...
© 2016 Dr. Christopher John BradlySince their recent experimental realisation, ultracold quantum gas...
The quantum many-body problem is at the heart of some of the most formidable open problems in modern...
Rapid progress in the field of ultracold atoms allows the study of many new and old models of quantu...
Quantum degenerate Fermi gases can be created in the laboratories using alkali atoms. These gases ca...
In this thesis, we discuss ultracold quantum gases both in continuum and optical lattices. For the c...
We explore the phase diagram of a two-component ultracold atomic Fermi gas interacting with zero-ran...
We investigate many-body phase diagrams of atomic boson-fermion mixtures loaded in the two-dimension...
A one-dimensional world is very unusual as there is an interplay between quantum statistics and geom...
We study the interplay between superfluidity and magnetism in a multicomponent gas of ultracold ferm...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
In ultracold Fermi gases, the spatial dimension and the number of particles involved in interactions...
The emergence of many-body physical phenomena from the quantum mechanical properties of atoms can be...
Strongly interacting gases of ultracold fermions have become an amazingly rich test-bed for many-bod...
We report on the creation of homogeneous Fermi gases of ultracold atoms in a uniform potential. In t...
We study a three-component superfluid Fermi gas in a spherically symmetric harmonic trap using the B...
© 2016 Dr. Christopher John BradlySince their recent experimental realisation, ultracold quantum gas...
The quantum many-body problem is at the heart of some of the most formidable open problems in modern...
Rapid progress in the field of ultracold atoms allows the study of many new and old models of quantu...
Quantum degenerate Fermi gases can be created in the laboratories using alkali atoms. These gases ca...
In this thesis, we discuss ultracold quantum gases both in continuum and optical lattices. For the c...
We explore the phase diagram of a two-component ultracold atomic Fermi gas interacting with zero-ran...
We investigate many-body phase diagrams of atomic boson-fermion mixtures loaded in the two-dimension...