Publication | Open Access
Stability and Phase Coherence of Trapped 1D Bose Gases
253
Citations
28
References
2003
Year
Quantum ScienceEngineeringPhysicsMany-body Quantum PhysicNatural SciencesApplied PhysicsCondensed Matter PhysicsUltracold AtomPhase Coherence LengthPhase CoherenceTrapped Bose GasesQuantum EntanglementBose-einstein CondensationCoherent ProcessQuantum Decoherence
We discuss stability and phase coherence of 1D trapped Bose gases and find that inelastic decay processes, such as three-body recombination, are suppressed in the strongly interacting (Tonks-Girardeau) and intermediate regimes. This is promising for achieving these regimes with a large number of particles. "Fermionization" of the system reduces the phase coherence length, and at T=0 the gas is fully phase coherent only deeply in the weakly interacting (Gross-Pitaevskii) regime.
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