Quantum Recurrences: Probe to study Quantum Chaos
arXiv:quant-ph/0007022 · doi:10.1103/PhysRevE.62.6308
Abstract
We study the phase space of periodically modulated gravitational cavity by means of quantum recurrence phenomena. We report that the quantum recurrences serve as a tool to connect phase space of the driven system with spectrum in quantum domain. With the help of quantum recurrences we investigate the quasi-energy spectrum of the system for a certain fixed modulation strength. In addition, we study transition of spectrum from discrete to continuum as a function of modulation strength.
10 pages, 4 figures
References in corpus (2)
Cited by in corpus (11)
- Quantum wave packet revivals
- Quantum Recurrences in Driven Power-law Potentials
- Quantum Revivals in Periodically Driven Systems close to nonlinear resonance
- Delicate and robust dynamical recurrences of matter waves in driven optical crystals
- Dynamical Localization of Bose-Einstein condensate in Optomechanics
- Nature of quantum recurrences in coupled higher dimensional systems
- Complex dynamics of nano-mechanical membrane in cavity optomechanics
- Robust Dynamical Recurrences Based on Floquet Spectrum
- A significantly stable mode of the ultracold atomic wave packet in amplitude modulated parabolic optical lattices
- Non-Dispersive, Accelerated Matter-Waves
- Cold Atoms in Driven Optical Lattices