Internal Josephson oscillations for distinct momenta Bose-Einstein condensates

Publication date

2011

Authors

Lim, L. -K
Troppenz, Thomas
de Morais Smith, CristianeISNI 0000000394433837

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Abstract

The internal Josephson oscillations between an atomic Bose-Einstein condensate (BEC) and a molecular one are studied for atoms in a square optical lattice subjected to a staggered gauge field. The system is described by a Bose-Hubbard model with complex and anisotropic hopping parameters, which are different for each species, atoms and molecules. When the flux per plaquette for each species is small, the system oscillates between two conventional zero-momentum condensates. However, there is a regime of parameters where Josephson oscillations between a vortex-carrying atomic condensate (finite momentum BEC) and a conventional zero-momentum molecular condensate may be realized. The experimental observation of the oscillations between these qualitatively distinct BEC's is possible with state of the art Ramsey interference techniques

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Lim, L -K, Troppenz, T & de Morais Smith, C 2011, 'Internal Josephson oscillations for distinct momenta Bose-Einstein condensates', Physical Review A - Atomic, Molecular, and Optical Physics, vol. 84, no. 5, 053609. https://doi.org/10.1103/PhysRevA.84.053609