Quantized vortices are the hallmark of superfluidity, and are often sought out as the first observable feature in new superfluid systems. Following the recent experimental observation of vortices in Bose-Einstein condensates comprised of atoms with inherent long-range dipole-dipole interactions [Nat. Phys. 18, 1453-1458 (2022)], we thoroughly investigate vortex properties in the three-dimensional dominantly dipolar regime, where beyond-mean-field effects are crucial for stability, and investigate the interplay between trap geometry and magnetic field tilt angle.Comment: 15 pages, 6 figure
We investigate the various physical mechanisms that underlie the dynamical instability of a quantize...
Engineering of synthetic magnetic flux in Bose-Einstein condensates [ Lin et al. Nature (London) 462...
We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation d...
We study the properties of singly quantized linear vortices in the supersolid phase of a dipolar Bos...
Bose-Einstein condensation, first predicted by Bose and Einstein in 1924, was finally realized in di...
We report experimental observations and numerical simulations of the formation, dynamics, and lifeti...
We have theoretically investigated the structure of spinning self-bound droplets made of $^{41}$K-$^...
We calculate the critical rotation frequency at which a vortex state becomes energetically favorable...
Ghost vortices constitute an elusive class of topological excitations in quantum fluids since the re...
The presence of quantized vortices and a high level of control over trap geometries and other system...
We report on the observation of vortex formation in a Bose-Einstein condensate of 87Rb atoms. Vortic...
Analysis based on the energy spectrum of noninteracting bosons shows that, under the circumstance of...
Quantized vortices are a prototypical feature of superfluidity that have been observed in multiple q...
Rotating dilute Bose-Einstein condensates (BEC) of alkali atoms offer a testing ground for theories ...
We report observations of the formation and subsequent decay of a vortex lattice in a Bose-Einstein ...
We investigate the various physical mechanisms that underlie the dynamical instability of a quantize...
Engineering of synthetic magnetic flux in Bose-Einstein condensates [ Lin et al. Nature (London) 462...
We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation d...
We study the properties of singly quantized linear vortices in the supersolid phase of a dipolar Bos...
Bose-Einstein condensation, first predicted by Bose and Einstein in 1924, was finally realized in di...
We report experimental observations and numerical simulations of the formation, dynamics, and lifeti...
We have theoretically investigated the structure of spinning self-bound droplets made of $^{41}$K-$^...
We calculate the critical rotation frequency at which a vortex state becomes energetically favorable...
Ghost vortices constitute an elusive class of topological excitations in quantum fluids since the re...
The presence of quantized vortices and a high level of control over trap geometries and other system...
We report on the observation of vortex formation in a Bose-Einstein condensate of 87Rb atoms. Vortic...
Analysis based on the energy spectrum of noninteracting bosons shows that, under the circumstance of...
Quantized vortices are a prototypical feature of superfluidity that have been observed in multiple q...
Rotating dilute Bose-Einstein condensates (BEC) of alkali atoms offer a testing ground for theories ...
We report observations of the formation and subsequent decay of a vortex lattice in a Bose-Einstein ...
We investigate the various physical mechanisms that underlie the dynamical instability of a quantize...
Engineering of synthetic magnetic flux in Bose-Einstein condensates [ Lin et al. Nature (London) 462...
We experimentally study emergence of microcanonical equilibrium states in the turbulent relaxation d...