Three fermions with strongly repulsive interactions in a spherical harmonic trap constitute the simplest nontrivial system that can exhibit the onset of itinerant ferromagnetism. Here, we present exact solutions for three trapped, attractively interacting fermions near a Feshbach resonance. We analyze energy levels on the upper branch of the resonance where the atomic interaction is effectively repulsive. When the s-wave scattering length a is sufficiently positive, three fully polarized fermions are energetically stable against a single spin-flip, indicating the possibility of itinerant ferromagnetism, as inferred in the recent experiment. We also investigate the high-temperature thermodynamics of a strongly repulsive or attractive Fermi g...
We study the quench dynamics of a two-component ultracold Fermi gas from the weak into the strong in...
Using continuous-space quantum Monte Carlo methods, we investigate the zero-temperature ferroma...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
We theoretically investigate the high-temperature thermodynamics of a strongly interacting trapped F...
We analytically determine the properties of three interacting fermions in a harmonic trap subject to...
Quantum virial expansion provides an ideal tool to investigate the high-temperature properties of a ...
The study of strongly correlated quantum gases in two dimensions has important ramifications for und...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
The nature of strongly interacting Fermi gases and magnetism is one of the most important and studie...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
We study a three-body system with zero-range interactions in a one-dimensional harmonic trap. The sy...
A major challenge in modern physics is to accurately describe strongly interacting quantum many-body...
We study a three-body system with zero-range interactions in a one-dimensional harmonic trap. The sy...
We conduct a theoretical study of SU(N) fermions confined by a one-dimensional harmonic potential. F...
© 2016 Dr. Christopher John BradlySince their recent experimental realisation, ultracold quantum gas...
We study the quench dynamics of a two-component ultracold Fermi gas from the weak into the strong in...
Using continuous-space quantum Monte Carlo methods, we investigate the zero-temperature ferroma...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
We theoretically investigate the high-temperature thermodynamics of a strongly interacting trapped F...
We analytically determine the properties of three interacting fermions in a harmonic trap subject to...
Quantum virial expansion provides an ideal tool to investigate the high-temperature properties of a ...
The study of strongly correlated quantum gases in two dimensions has important ramifications for und...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
The nature of strongly interacting Fermi gases and magnetism is one of the most important and studie...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
We study a three-body system with zero-range interactions in a one-dimensional harmonic trap. The sy...
A major challenge in modern physics is to accurately describe strongly interacting quantum many-body...
We study a three-body system with zero-range interactions in a one-dimensional harmonic trap. The sy...
We conduct a theoretical study of SU(N) fermions confined by a one-dimensional harmonic potential. F...
© 2016 Dr. Christopher John BradlySince their recent experimental realisation, ultracold quantum gas...
We study the quench dynamics of a two-component ultracold Fermi gas from the weak into the strong in...
Using continuous-space quantum Monte Carlo methods, we investigate the zero-temperature ferroma...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...