C1 - Journal Articles RefereedThe low temperature dynamics of a vortex in a trapped quasi-two-dimensional Bose-Einstein condensate are studied quantitatively. Precession of an off-centered vortex in a dimple trap, embedded in a weaker harmonic trap, leads to the emission of sound in a dipolar radiation pattern. Sound emission and reabsorption can be controlled by varying the depth of the dimple. In a shallow dimple, the power emitted is proportional to the vortex acceleration-squared over the precession frequency, whereas for a deep dimple, periodic sound reabsorption stabilizes the vortex against radiation-induced decay
We provide a joint numerical-analytical study of the physics of a flowing atomic Bose-Einstein conde...
We propose methods to generate and manipulate vortex dipoles in an atomic Bose-Einstein condensate u...
We study the evolution inside a harmonic trap of Bose-Einstein condensates released from the periodi...
The low temperature dynamics of a vortex in a trapped quasi-two-dimensional Bose-Einstein condensat...
We examine the dynamics of a vortex dipole in the Bose–Einstein condensates of trapped dilute atomic...
We have performed numerical simulations of various vortex configurations in a trapped BoseEinstein c...
Dilute atomic Bose-Einstein condensates support intriguing macroscopic excitations in the form of qu...
We study controlled methods of preparing vortex configurations in atomic Bose-Einstein condensates a...
We experimentally and theoretically investigate the lowest-lying axial excitation of an atomic Bose-...
We experimentally investigate the periodic vortex shedding dynamics in a highly oblate Bose-Einstein...
In quantum fluids, the quantization of circulation forbids the diffusion of a vortex swirling flow s...
We investigate vortex shedding from a moving penetrable obstacle in a highly oblate Bose-Einstein co...
We consider the scattering of an acoustic wave from a vortex induced by optical superradiance. The v...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
The dynamics of systems out of equilibrium, such as the phase transition process, are very rich, and...
We provide a joint numerical-analytical study of the physics of a flowing atomic Bose-Einstein conde...
We propose methods to generate and manipulate vortex dipoles in an atomic Bose-Einstein condensate u...
We study the evolution inside a harmonic trap of Bose-Einstein condensates released from the periodi...
The low temperature dynamics of a vortex in a trapped quasi-two-dimensional Bose-Einstein condensat...
We examine the dynamics of a vortex dipole in the Bose–Einstein condensates of trapped dilute atomic...
We have performed numerical simulations of various vortex configurations in a trapped BoseEinstein c...
Dilute atomic Bose-Einstein condensates support intriguing macroscopic excitations in the form of qu...
We study controlled methods of preparing vortex configurations in atomic Bose-Einstein condensates a...
We experimentally and theoretically investigate the lowest-lying axial excitation of an atomic Bose-...
We experimentally investigate the periodic vortex shedding dynamics in a highly oblate Bose-Einstein...
In quantum fluids, the quantization of circulation forbids the diffusion of a vortex swirling flow s...
We investigate vortex shedding from a moving penetrable obstacle in a highly oblate Bose-Einstein co...
We consider the scattering of an acoustic wave from a vortex induced by optical superradiance. The v...
In this thesis we solve the Gross-Pitaevskii equation numerically in order to model the response of ...
The dynamics of systems out of equilibrium, such as the phase transition process, are very rich, and...
We provide a joint numerical-analytical study of the physics of a flowing atomic Bose-Einstein conde...
We propose methods to generate and manipulate vortex dipoles in an atomic Bose-Einstein condensate u...
We study the evolution inside a harmonic trap of Bose-Einstein condensates released from the periodi...