We have studied a Bose-Einstein condensate of (87)Rb atoms under an oscillatory excitation. For a fixed frequency of excitation, we have explored how the values of amplitude and time of excitation must be combined in order to produce quantum turbulence in the condensate. Depending on the combination of these parameters different behaviors are observed in the sample. For the lowest values of time and amplitude of excitation, we observe a bending of the main axis of the cloud. Increasing the amplitude of excitation we observe an increasing number of vortices. The vortex state can evolve into the turbulent regime if the parameters of excitation are driven up to a certain set of combinations. If the value of the parameters of these combinations...
A central concept in the modern understanding of turbulence is the existence of cascades of excitati...
We present experimental observations and numerical simulations of nonequilibrium spatial structures ...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
We have studied a Bose-Einstein condensate of (87)Rb atoms under an oscillatory excitation. For a fi...
We have studied a Bose-Einstein condensate of (87)Rb atoms under an oscillatory excitation. For a fi...
We present experimental observations and numerical simulations of nonequilibrium spatial structures ...
We report on the experimental observation of vortex formation and production of tangled vortex distr...
We report on the experimental observation of vortex formation and production of tangled vortex distr...
We report on the experimental observation of vortex tangles in an atomic Bose-Einstein condensate (B...
We report on the experimental observation of vortex tangles in an atomic Bose-Einstein condensate (B...
We report on the experimental observation of vortex formation and production of tangled vortex distr...
A novel concept of quantum turbulence in finite size superfluids, such as trapped bosonic atoms, is ...
We numerically model turbulence in a trapped atomic Bose-Einstein condensate by solving the Gross-Pi...
A novel concept of quantum turbulence in finite size superfluids, such as trapped bosonic atoms, is ...
In a recent experiment [1], Kwon et al. generated a disordered state of quantum vortices by translat...
A central concept in the modern understanding of turbulence is the existence of cascades of excitati...
We present experimental observations and numerical simulations of nonequilibrium spatial structures ...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
We have studied a Bose-Einstein condensate of (87)Rb atoms under an oscillatory excitation. For a fi...
We have studied a Bose-Einstein condensate of (87)Rb atoms under an oscillatory excitation. For a fi...
We present experimental observations and numerical simulations of nonequilibrium spatial structures ...
We report on the experimental observation of vortex formation and production of tangled vortex distr...
We report on the experimental observation of vortex formation and production of tangled vortex distr...
We report on the experimental observation of vortex tangles in an atomic Bose-Einstein condensate (B...
We report on the experimental observation of vortex tangles in an atomic Bose-Einstein condensate (B...
We report on the experimental observation of vortex formation and production of tangled vortex distr...
A novel concept of quantum turbulence in finite size superfluids, such as trapped bosonic atoms, is ...
We numerically model turbulence in a trapped atomic Bose-Einstein condensate by solving the Gross-Pi...
A novel concept of quantum turbulence in finite size superfluids, such as trapped bosonic atoms, is ...
In a recent experiment [1], Kwon et al. generated a disordered state of quantum vortices by translat...
A central concept in the modern understanding of turbulence is the existence of cascades of excitati...
We present experimental observations and numerical simulations of nonequilibrium spatial structures ...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...