Publication | Open Access
Exact Relaxation Dynamics of a Localized Many-Body State in the 1D Bose Gas
65
Citations
23
References
2012
Year
Quantum DynamicEngineeringMany-body Quantum PhysicDensity NotchExact Relaxation DynamicsQuantum MaterialsUltracold AtomQuantum EntanglementQuantum SciencePhysicsDark SolitonBose GasAtomic PhysicsBose-einstein CondensationDensity ProfileNatural SciencesParticle PhysicsApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemLocalized Many-body StateMany-body Problem
Through an exact method, we numerically solve the time evolution of the density profile for an initially localized state in the one-dimensional bosons with repulsive short-range interactions. We show that a localized state with a density notch is constructed by superposing one-hole excitations. The initial density profile overlaps the plot of the squared amplitude of a dark soliton in the weak coupling regime. We observe the localized state collapsing into a flat profile in equilibrium for a large number of particles such as N=1000. The relaxation time increases as the coupling constant decreases, which suggests the existence of off-diagonal long-range order. We show a recurrence phenomenon for a small number of particles such as N=20.
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