Publication | Open Access
Splitting bright matter-wave solitons on narrow potential barriers: Quantum to classical transition and applications to interferometry
44
Citations
52
References
2014
Year
Narrow Potential BarriersEngineeringBright SolitonsCavity QedIntegrable SystemSoliton SplittingBright Matter-wave SolitonsOptical PropertiesOptical SolitonQuantum MatterClassical TransitionQuantum SciencePhotonicsPhysicsQuantum Field TheorySoliton InterferometryBose-einstein CondensationGross-pitaevskii EquationNatural SciencesTopological SolitonParticle PhysicsApplied Physics
We study bright solitons in the Gross-Pitaevskii equation as they are split and recombined in a low-energy system. We present analytic results determining the general region in which a soliton may not be split on a potential barrier and confirm these results numerically. Furthermore, we analyze the energetic regimes where quantum fluctuations in the initial center-of-mass position and momentum become influential on the outcome of soliton splitting and recombination events. We then use the results of this analysis to determine a parameter regime where soliton interferometry is practicable.
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