articleTop 1% cited
Quantum dynamics of an atomic Bose-Einstein condensate in a double-well potential
Physical Review A · 1997 · Vol. 55(6) · pp. 4318–4324
G. J. Milburn✉(University of Queensland)J. F. Corney(University of Queensland)E. M. Wright(University of Queensland)D. F. Walls(University of Queensland)
Abstract
We consider the quantum dynamics of a neutral atom Bose-Einstein condensate in a double-well potential, including many-body hard-sphere interactions. Using a mean-field factorization we show that the coherent oscillations due to tunneling are suppressed when the number of atoms exceeds a critical value. An exact quantum solution, in a two-mode approximation, shows that the mean-field solution is modulated by a quantum collapse and revival sequence.
Cold Atom Physics and Bose-Einstein CondensatesQuantum, superfluid, helium dynamicsStrong Light-Matter InteractionsPhysicsBose–Einstein condensateQuantum mechanicsQuantumQuantum tunnellingQuantum dynamicsPrincipal quantum numberAtom (system on chip)Quantum electrodynamicsQuantum dissipation
Funding
- Royal Society
- Royal Society Te Apārangi
- Marsden Fund
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References
The nonlinear coherent coupler
IEEE Journal of Quantum Electronics · 1982 · 958 citations
Bose-Einstein Condensation in a Gas of Sodium Atoms
Physical Review Letters · 1995 · 5,417 citations
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