BEC Collapse and Dynamical Squeezing of Vacuum Fluctuations
arXiv:cond-mat/0207289 · doi:10.1103/PhysRevA.68.043625
Abstract
We analyze the phenomena of Bose Novae, as described by Donley et al [Nature 412, 295 (2001)], by focusing on the behavior of excitations or fluctuations above the condensate, as driven by the dynamics of the condensate (rather than the dynamics of the condensate alone or the kinetics of the atoms). The dynamics of the condensate squeezes and amplifies the quantum excitations, mixing the positive and negative frequency components of their wave functions thereby creating particles which appear as bursts and jets. By analyzing the changing amplitude and particle content of these excitations, our simple physical picture (based on a test field approximation) explains well the overall features of the Bose Novae phenomena and provide excellent quantitative fits with experimental data on several aspects, such as the scaling behavior of the collapse time and the amount of particles in the jet. The predictions of the bursts at this level of approximation is less than satisfactory but may be improved on by including the backreaction of the excitations on the condensate. The mechanism behind the dominant effect -- parametric amplification of vacuum fluctuations and freezing of modes outside of horizon -- is similar to that of cosmological particle creation and structure formation in a rapid quench (which is fundamentally different from Hawking radiation in black holes). This shows that BEC dynamics is a promising venue for doing `laboratory cosmology'.
Latex 36 pages, 6 figures
References in corpus (7)
- Microscopic theory of atom-molecule oscillations in a Bose-Einstein condensate
- Bose-Einstein condensate collapse: a comparison between theory and experiment
- Dynamics of a Bose-Einstein Condensate near a Feshbach Resonance
- Feshbach resonances and collapsing Bose-Einstein condensates
- A Consistent Picture of a Collapsing Bose-Einstein Condensate
- Properties of a Dilute Bose Gas near a Feshbach Resonance
- Rapid Adiabatic Passage from an Atomic to a Molecular Condensate
Cited by in corpus (39)
- Analogue Gravity
- Quantum Graphity: a model of emergent locality
- Quantum simulation of cosmic inflation in two-component Bose-Einstein condensates
- Cosmological Particle Production: A Review
- Problems with the Newton-Schrödinger Equations
- Quantum squeezing and sensing with pseudo anti-parity-time symmetry
- Mean-field description of dynamical collapse of a fermionic condensate in a trapped boson-fermion mixture
- Early Universe Quantum Processes in BEC Collapse Experiments
- Aspects of Cosmic Inflation in Expanding Bose-Einstein Condensates
- Quantum depletion of collapsing Bose-Einstein condensates
- Dirac Equation in (1+1)-Dimensional Curved Spacetime and the Multiphoton Quantum Rabi Model
- Signature change events: A challenge for quantum gravity?
- Trans-Planckian physics and signature change events in Bose gas hydrodynamics
- Collapsing Bose-Einstein condensates beyond the Gross-Pitaevskii approximation
- On the robustness of entanglement in analogue gravity systems
- Dynamical Casimir effect for magnons in a spinor Bose-Einstein condensate
- Mean-field model of jet formation in a collapsing Bose-Einstein condensate
- Simple Mean-Field Theory for a Zero-Temperature Fermi Gas at a Feshbach Resonance
- Gravitational Decoherence, Alternative Quantum Theories and Semiclassical Gravity
- Formation of a sonic horizon in isotropically expanding Bose-Einstein condensates
- Josephson oscillation and induced collapse in an attractive Bose-Einstein condensate
- Quantum-field dynamics of expanding and contracting Bose-Einstein condensates
- Evolution of a collapsing and exploding Bose-Einstein condensate in different trap symmetries
- Particle creation in the spin modes of a dynamically oscillating two-component Bose-Einstein condensate
- Hartree-Fock-Bogoliubov Model and Simulation of Attractive and Repulsive Bose-Einstein Condensates
- Domain structures in quantum graphity
- Emergent spacetimes
- Signature-change events in emergent spacetimes with anisotropic scaling
- Collapse times for attractive Bose-Einstein condensates
- Dynamical Response of an Unruh-DeWitt Detector in a Quantum Field over the History of the Universe
- Foundational Issues in Dynamical Casimir Effect and Analogue Features in Cosmological Particle Creation
- Dissipative parametric resonance in a modulated 1D Bose gas
- A variational model for the delayed collapse of Bose Einstein condensates
- Fluctuation assisted collapses of Bose-Einstein condensates
- Analog cosmology with spinor BECs
- Fluctuation-Dissipation Relation for a Quantum Brownian Oscillator in a Parametrically Squeezed Thermal Field
- Analogue gravitational phenomena in Bose-Einstein condensates
- Analog cosmology with spinor Bose-Einstein condensates
- Many-body dynamics of a Bose--Einstein condensate collapsing by quantum tunneling