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Macroscopic superposition states in rotating ring lattices

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arxiv 0802.4309 v2 pith:QTEWDVBJ submitted 2008-02-29 cond-mat.other

classification cond-mat.other
keywords latticesringrotationdifferentfrequencymacroscopicstatestates
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We investigate the effects of rotation on one-dimensional ultracold bosons confined to optical ring lattices. First, we show that there exists a critical rotation frequency at which the ground state of a weakly-interacting and integer-filled atomic gas is fragmented into a macroscopic superposition state with different circulation. Second, we point out several advantages of using slightly non-uniform ring lattices. Finally, we demonstrate that different quasi-momentum states can be distinguished in time-of-flight absorption imaging and propose to probe correlations via the many-body oscillations induced by a sudden change in the rotation frequency.

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