Vortices are found in a fermion system with repulsive dipole-dipole interactions, trapped by a rotating quasi-two-dimensional harmonic oscillator potential. Such systems have much in common with electrons in quantum dots, where rotation is induced via an external magnetic field. In contrast to the Coulomb interactions between electrons, the (externally tunable) anisotropy of the dipole-dipole interaction breaks the rotational symmetry of the Hamiltonian. This may cause the otherwise rotationally symmetric exact wave function to reveal its internal structure more directly
In a quantum-mechanical system, particle-hole duality implies that instead of studying particles, we...
We study electronic structures of two-dimensional quantum dots in strong magnetic fields using mean-...
Magneto-excitons in droplets of a spin polarized chiral Luttinger liquid formed in quantum dots in a...
We predict the formation of giant vortices in quasi-two-dimensional quantum dots at high magnetic fi...
We predict the formation of giant vortices in quasi-two-dimensional quantum dots at high magnetic fi...
We show that the rotation of trapped quantum mechanical particles with a repulsive interaction can l...
Quantized vortices are a prototypical feature of superfluidity that have been observed in multiple q...
The main theme of this review is the many-body physics of vortices in quantum droplets of bosons or ...
Vortices can form when finite quantal systems are set rotating. In the limit of small particle numbe...
We study the stability and structure of vortices emerging in two-dimensional quantum dots in high ma...
The rotation of a quantum liquid induces vortices to carry angular momentum. When the system is comp...
Finite quantal systems at high angular momenta may exhibit vortex formation and localization. These ...
For rotating Bose-Einstein condensates, the occurrence of vortices has been much discussed in the Gr...
We calculate the critical rotation frequency at which a vortex state becomes energetically favorable...
The main theme of this review is the many-body physics of vortices in quantum droplets of bosons or ...
In a quantum-mechanical system, particle-hole duality implies that instead of studying particles, we...
We study electronic structures of two-dimensional quantum dots in strong magnetic fields using mean-...
Magneto-excitons in droplets of a spin polarized chiral Luttinger liquid formed in quantum dots in a...
We predict the formation of giant vortices in quasi-two-dimensional quantum dots at high magnetic fi...
We predict the formation of giant vortices in quasi-two-dimensional quantum dots at high magnetic fi...
We show that the rotation of trapped quantum mechanical particles with a repulsive interaction can l...
Quantized vortices are a prototypical feature of superfluidity that have been observed in multiple q...
The main theme of this review is the many-body physics of vortices in quantum droplets of bosons or ...
Vortices can form when finite quantal systems are set rotating. In the limit of small particle numbe...
We study the stability and structure of vortices emerging in two-dimensional quantum dots in high ma...
The rotation of a quantum liquid induces vortices to carry angular momentum. When the system is comp...
Finite quantal systems at high angular momenta may exhibit vortex formation and localization. These ...
For rotating Bose-Einstein condensates, the occurrence of vortices has been much discussed in the Gr...
We calculate the critical rotation frequency at which a vortex state becomes energetically favorable...
The main theme of this review is the many-body physics of vortices in quantum droplets of bosons or ...
In a quantum-mechanical system, particle-hole duality implies that instead of studying particles, we...
We study electronic structures of two-dimensional quantum dots in strong magnetic fields using mean-...
Magneto-excitons in droplets of a spin polarized chiral Luttinger liquid formed in quantum dots in a...