-coherence vs. -coherence: An alternative route to the Gross-Pitaevskii equation
arXiv:1508.04117 · doi:10.1016/j.aop.2015.08.017
Abstract
We show how a candidate mean-field amplitude can be constructed from the exact wave function of an externally forced -Boson system. The construction makes use of subsidiary -particle states which are propagated in time in addition to the true -particle state, but does not involve spontaneous breaking of the symmetry associated with particle number conservation. Provided the flow in Fock space possesses a property which we call maximum stiffness, or -coherence, the candidate amplitude actually satisfies the time-dependent Gross-Pitaevskii equation, and then serves as macroscopic wave function of the forced -particle system. The general procedure is illustrated in detail by numerical calculations performed for the model of a driven bosonic Josephson junction, which allows one to keep track of all contributions which usually are subject to uncontrolled assumptions. These calculations indicate that macroscopic wave functions can persist even under conditions of strong forcing, but are rapidly destroyed upon entering a regime of chaotic dynamics. Our results provide a foundation for future attempts to manipulate, and actively control, macroscopic wave functions by means of purposefully designed force protocols.
21 pages, 16 figures
References in corpus (10)
- Non-Abelian gauge fields and topological insulators in shaken optical lattices
- Coherent control of dressed matter waves
- Exploring dynamic localization with a Bose-Einstein condensate
- Rigorous Derivation of the Gross-Pitaevskii Equation
- Differences between mean-field dynamics and N-particle quantum dynamics as a signature of entanglement
- Resonant nonlinear quantum transport for a periodically kicked Bose condensate
- Wave chaos in the non-equilibrium dynamics of the Gross-Pitaevskii equation
- Second-order, number-conserving description of non-equilibrium dynamics in finite-temperature Bose-Einstein condensates
- Trojan quasiparticles
- Emergence and destruction of macroscopic wave functions