Dynamics and Density Correlations in Matter Wave Jet Emission of a Driven Condensate
arXiv:1804.08251 · doi:10.1103/PhysRevA.99.063624
Abstract
Emission of matter wave jets has been recently observed in a Bose-Einstein condensate confined by a cylindrical box potential, induced by a periodically modulated inter-particle interaction (Nature {\bf 551}, 356 (2017)). In this paper we apply the time-dependent Bogoliubov theory to study the quantum dynamics and the correlation effects observed in this highly non-equilibrium phenomenon. Without any fitting parameter, our theoretical calculations on the number of ejected atoms and the angular density correlations are in excellent quantitative agreement with the experimental measurements. The exponential growth in time of the ejected atoms can be understood in terms of a dynamical instability associated with the modulation of the interaction. We interpret the angular density correlation of the jets as the Hanbury-Brown-Twiss effect between the excited quasi-particles with different angular momenta, and our theory explains the puzzling observation of the asymmetric density correlations between the jets with the same and opposite momenta. Our theory can also identify the main factors that control the height and width of the peaks in the density correlation function, which can be directly verified in future experiments.
9 pages, 6 figures
References in corpus (12)
- Spatial quantum noise interferometry in expanding ultracold atom clouds
- Collective emission of matter-wave jets from driven Bose-Einstein condensates
- Collective excitation of a Bose-Einstein condensate by modulation of the atomic scattering length
- Parametric Instability Rates in Periodically-Driven Band Systems
- Parametric instabilities in a 2D periodically-driven bosonic system: Beyond the weakly-interacting regime
- Density waves and jet emission asymmetry in Bose Fireworks
- Instability and control of a periodically-driven Bose-Einstein condensate
- Complex correlations in high harmonic generation of matter-wave jets revealed by pattern recognition
- Formation of granular structures in trapped Bose-Einstein condensates under oscillatory excitations
- Second-order, number-conserving description of non-equilibrium dynamics in finite-temperature Bose-Einstein condensates
- Characterization of the stimulated excitation in a driven Bose-Einstein condensate
- On the jets emitted by driven Bose-Einstein condensates
Cited by in corpus (15)
- Many-Body Echo
- Emission of Spin-correlated Matter-wave Jets from Spinor Bose-Einstein Condensates
- Many-body Dynamics with Time-dependent Interaction
- Periodically and Quasi-periodically Driven Dynamics of Bose-Einstein Condensates
- Jet Sub-structure in Fireworks Emission from Non-uniform and Rotating Bose-Einstein Condensates
- Emission of correlated jets from a driven matter-wave soliton in a quasi-one-dimensional geometry
- Maximum Energy Growth Rate in Dilute Quantum Gases
- Quench dynamics of Bose-Einstein condensates in boxlike traps
- Patterns, spin-spin correlations and competing instabilities in driven quasi-two-dimensional spin-1 Bose-Einstein condensates
- Driving Quantum Correlated Atom-Pairs from a Bose-Einstein Condensate
- Resonant enhancement of particle emission from a parametrically driven condensate in a one-dimensional lattice
- Emission of particles from a parametrically driven condensate in a one-dimensional lattice
- The bulk modulus of three-dimensional quantum droplets
- Dynamics of Momentum Distribution and Structure Factor in a Weakly Interacting Bose Gas with a Periodical Modulation
- Interference-induced suppression of particle emission from a Bose-Einstein condensate in lattice with time-periodic modulations