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Density-Dependent Synthetic Gauge Fields Using Periodically Modulated Interactions

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arxiv 1311.3150 v3 pith:VJPCCHW2 submitted 2013-11-13 cond-mat.quant-gas

Density-Dependent Synthetic Gauge Fields Using Periodically Modulated Interactions

classification cond-mat.quant-gas
keywords fieldsgaugeinteractionsdensity-dependentinsulatorperiodicallysyntheticappearance
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We show that density-dependent synthetic gauge fields may be engineered by combining periodically modu- lated interactions and Raman-assisted hopping in spin-dependent optical lattices. These fields lead to a density- dependent shift of the momentum distribution, may induce superfluid-to-Mott insulator transitions, and strongly modify correlations in the superfluid regime. We show that the interplay between the created gauge field and the broken sublattice symmetry results, as well, in an intriguing behavior at vanishing interactions, characterized by the appearance of a fractional Mott insulator.

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