arXiv · 1105.2106
Transition to quantum turbulence in a finite size superfluid
Abstract
A novel concept of quantum turbulence in finite size superfluids, such as trapped bosonic atoms, is discussed. We have used an atomic $^{87}\mathrm{Rb}$ BEC to study the emergence of this phenomenon. In our experiment, the transition to the quantum turbulent regime is characterized by a tangled vortex lines formation, controlled by the amplitude and time duration of the excitation produced by an external oscillating field. A simple model is suggested to account for the experimental observations. The transition from the non-turbulent to the turbulent regime is a rather gradual crossover. But it takes place in a sharp enough way, allowing for the definition of an effective critical line separating the regimes. Quantum turbulence emerging in a finite-size superfluid may be a new idea helpful for revealing important features associated to turbulence, a more general and broad phenomenon.
Explore related subjects
Keep this discovery
R. F. Shiozaki, G. D. Telles, V. I. Yukalov, V. S. Bagnato. 2011-05-11. Transition to quantum turbulence in a finite size superfluid. https://doi.org/10.1002/lapl.201110005
Cite the original work for its findings. Save a collection to share your selection of sources.