Bogoliubov-wave turbulence in Bose-Einstein condensates
arXiv:1502.03274 · doi:10.1103/PhysRevA.91.053620
Abstract
We theoretically and numerically study Bogoliubov-wave turbulence in three-dimensional atomic Bose-Einstein condensates with the Gross-Pitaevskii equation, investigating three spectra for the macroscopic wave function, the density distribution, and the Bogoliubov-wave distribution. In this turbulence, Bogoliubov waves play an important role in the behavior of these spectra, so that we call it Bogoliubov-wave turbulence. In a previous study [D. Proment \textit{et al.}, Phys. Rev. A \textbf{80}, 051603(R) (2009)], a power law in the spectrum for the macroscopic wave function was suggested by using weak wave turbulence theory, but we find that another power law appears in both theoretical and numerical calculations. Furthermore, we focus on the spectrum for the density distribution, which can be observed in experiments, discussing the possibility of experimental observation. Through these analytical and numerical calculations, we also demonstrate that the previously neglected condensate dynamics induced by the Bogoliubov waves is remarkably important.
13 pages, 4 figures [Erratum:Phys. Rev. A 93, 039901 (2016) ]
References in corpus (13)
- Emergence of turbulence in an oscillating Bose-Einstein condensate
- Introduction to quantum turbulence
- Velocity Statistics Distinguish Quantum Turbulence from Classical Turbulence
- Relaxation of superfluid turbulence in highly oblate Bose-Einstein condensates
- Bottleneck crossover between classical and quantum superfluid turbulence
- Inverse Energy Cascade in Forced 2D Quantum Turbulence
- Quantum Turbulence in a Trapped Bose-Einstein Condensate
- Energy spectra of vortex distributions in two-dimensional quantum turbulence
- Emergence of order from turbulence in an isolated planar superfluid
- Classical and quantum regimes of two-dimensional turbulence in trapped Bose-Einstein condensates
- Visualization of Superfluid Helium Flow
- Generation and Decay of Two-Dimensional Quantum Turbulence in a Trapped Bose-Einstein Condensate
- Thermal dissipation in quantum turbulence
Cited by in corpus (17)
- Quantum turbulence in trapped atomic Bose-Einstein condensates
- Numerical Studies of Quantum Turbulence
- Quantum turbulence in quantum gases
- Flemish Strings of Magnetic Solitons and a Non-Thermal Fixed Point in a One-Dimensional Antiferromagnetic Spin-1 Bose Gas
- Testing wave turbulence theory for Gross-Pitaevskii system
- Direct and inverse cascades of spin-wave turbulence in spin-1 ferromagnetic spinor Bose-Einstein condensates
- Quantum turbulence in Bose-Einstein condensates: present status and new challenges ahead
- Theoretical analysis of quantum turbulence using the Onsager "ideal turbulence" theory
- Momentum distribution of Vinen turbulence in trapped atomic Bose-Einstein condensates
- Turbulent relaxation after a quench in the Heisenberg model
- Dynamical thermalization of Bose-Einstein condensate in Bunimovich stadium
- Dynamics and thermalization of Bose-Einstein condensate in Sinai oscillator trap
- Characterization of nonequilibrium states of trapped Bose-Einstein condensates
- Two-dimensional Schrödinger symmetry and three-dimensional breathers and Kelvin-ripple complexes as quasi-massive-Nambu-Goldstone modes
- Kolmogorov turbulence defeated by Anderson localization for a Bose-Einstein condensate in a Sinai-oscillator trap
- Incompressible Energy Spectrum from Wave Turbulence
- Bound Bogoliubov quasiparticles in photon superfluids