We analytically determine the properties of three interacting fermions in a harmonic trap subject to an external rotation. Thermodynamic quantities such as the entropy and energy are calculated from the third order quantum virial expansion. By parameterizing the solutions in the rotating frame we find that the energy and entropy are universal for all rotations in the strongly interacting regime. Additionally, we find that rotation suppresses the onset of itinerant ferromagnetism in strongly interacting repulsive three-body systems
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
We report the creation and the study of the stability of a repulsive quasi-homogeneous spin-$1/2$ Fe...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
We analytically determine the properties of two interacting particles in a harmonic trap subject to ...
Three fermions with strongly repulsive interactions in a spherical harmonic trap constitute the simp...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
© 2016 Dr. Christopher John BradlySince their recent experimental realisation, ultracold quantum gas...
We characterize the high-temperature thermodynamics of rotating bosons and fermions in two-dimension...
Quantum virial expansion provides an ideal tool to investigate the high-temperature properties of a ...
Based on Thomas-Fermi density functional theory, itinerant ferromagnetism of repulsive two...
Within a quantum virial expansion, we investigate theoretically the violation of universal thermodyn...
We show that the rotation of trapped quantum mechanical particles with a repulsive interaction can l...
Itinerant ferromagnetism in dilute Fermi gases is predicted to be at values of the gas parameter whe...
We revisit the properties of the two-component Fermi gas with short-range interactions in three dime...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
We report the creation and the study of the stability of a repulsive quasi-homogeneous spin-$1/2$ Fe...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
We analytically determine the properties of two interacting particles in a harmonic trap subject to ...
Three fermions with strongly repulsive interactions in a spherical harmonic trap constitute the simp...
© 2014 Dr. Brendan Craig MulkerinThe experimental realisation of ultracold quantum gases offers a ne...
© 2016 Dr. Christopher John BradlySince their recent experimental realisation, ultracold quantum gas...
We characterize the high-temperature thermodynamics of rotating bosons and fermions in two-dimension...
Quantum virial expansion provides an ideal tool to investigate the high-temperature properties of a ...
Based on Thomas-Fermi density functional theory, itinerant ferromagnetism of repulsive two...
Within a quantum virial expansion, we investigate theoretically the violation of universal thermodyn...
We show that the rotation of trapped quantum mechanical particles with a repulsive interaction can l...
Itinerant ferromagnetism in dilute Fermi gases is predicted to be at values of the gas parameter whe...
We revisit the properties of the two-component Fermi gas with short-range interactions in three dime...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...
Can a gas of spin-up and spin-down fermions become ferromagnetic because of repulsive interactions? ...
We report the creation and the study of the stability of a repulsive quasi-homogeneous spin-$1/2$ Fe...
We investigate the phase diagram of a two-component repulsive Fermi gas at T=0 by means of quantum M...