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arxiv: 0903.2710 · v1 · pith:DBHVM7LJnew · submitted 2009-03-16 · ❄️ cond-mat.other

Quantum Simulations of Extended Hubbard Models with Dipolar Crystals

classification ❄️ cond-mat.other
keywords dipolarmodelsmoleculesquantumatomsdynamicsextendedhubbard
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In this paper we study the realization of lattice models in mixtures of atomic and dipolar molecular quantum gases. We consider a situation where polar molecules form a self-assembled dipolar lattice, in which atoms or molecules of a second species can move and scatter. We describe the system dynamics in a master equation approach in the Brownian motion limit of slow particles and fast phonons, which we find appropriate for our system. In a wide regime of parameters, the reduced dynamics of the particles leads to physical realizations of extended Hubbard models with tuneable long-range interactions mediated by crystal phonons. This extends the notion of quantum simulation of strongly correlated systems with cold atoms and molecules to include phonon-dynamics, where all coupling parameters can be controlled by external fields.

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