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Quantum dynamics of bosons in a double-well potential: Josephson oscillations,self-trapping and ultralong tunneling times
Authors:A. N. Salgueiro  A.F.R. de Toledo Piza  G. B. Lemos  R. Drumond  M. C. Nemes  M. Weidemüller
Affiliation:1.Instituto de Física, Universidade de S?o Paulo,S?o Paulo,Brazil;2.Departamento de Física,Instituto de Ciências Exatas, Universidade Federal de Minas Gerais,Belo Horizonte,Brazil;3.Physikalisches Institut, Albert-Ludwigs-Universit?t Freiburg,Freiburg,Germany
Abstract:
The dynamics of the population imbalance of bosons in a double-well potential is investigated from the point of view of many-body quantum mechanics in the framework of the two-mode model. For small initial population imbalances, coherent superpositions of almost equally spaced energy eigenstates lead to Josephson oscillations. The suppression of tunneling at population imbalances beyond a critical value is related to a high concentration of initial state population in the region of the energy spectrum with quasi-degenerate doublets. Negligible coherences among adjacent doublets result in imbalance oscillations with a very small amplitude. For unaccessible long times, however, the system recovers the regime of Josephson oscillations.
Keywords:03.75.Lm Tunneling, Josephson effect, Bose-Einstein condensates in periodic potentials, solitons, vortices, and topological excitations  03.65.-w Quantum mechanics  05.30.Jp Boson systems
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