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- W2566555087 abstract "We address band engineering in the presence of periodic driving by numerically shaking a lattice containing a bosonic condensate. By not restricting to simplified band structure models we are able to address arbitrary values of the shaking frequency, amplitude, and interaction strengths $g$. For ``near-resonant'' shaking frequencies with moderate $g$, a quantum phase transition to a finite momentum superfluid is obtained with Kibble-Zurek scaling and quantitative agreement with experiment. We use this successful calibration as a platform to support a more general investigation of the interplay between (one particle) Floquet theory and the effects associated with arbitrary $g$. Band crossings lead to superfluid destabilization, but where this occurs depends on $g$ in a complicated fashion." @default.
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- W2566555087 date "2017-05-31" @default.
- W2566555087 modified "2023-10-14" @default.
- W2566555087 title "Direct Lattice Shaking of Bose Condensates: Finite Momentum Superfluids" @default.
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- W2566555087 doi "https://doi.org/10.1103/physrevlett.118.220401" @default.
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