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- W1984834626 abstract "We create an artificial graphene system with tunable interactions and study the crossover from metallic to Mott insulating regimes, both in isolated and coupled two-dimensional honeycomb layers. The artificial graphene consists of a two-component spin mixture of an ultracold atomic Fermi gas loaded into a hexagonal optical lattice. For strong repulsive interactions, we observe a suppression of double occupancy and measure a gapped excitation spectrum. We present a quantitative comparison between our measurements and theory, making use of a novel numerical method to obtain Wannier functions for complex lattice structures. Extending our studies to time-resolved measurements, we investigate the equilibration of the double occupancy as a function of lattice loading time." @default.
- W1984834626 created "2016-06-24" @default.
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- W1984834626 date "2013-10-31" @default.
- W1984834626 modified "2023-10-17" @default.
- W1984834626 title "Artificial Graphene with Tunable Interactions" @default.
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- W1984834626 doi "https://doi.org/10.1103/physrevlett.111.185307" @default.
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