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Spin-chain model for strongly interacting one-dimensional Bose-Fermi mixtures

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arxiv 1611.04418 v4 pith:N2WQH5R5 submitted 2016-11-14 cond-mat.quant-gas

Spin-chain model for strongly interacting one-dimensional Bose-Fermi mixtures

classification cond-mat.quant-gas
keywords modelchainfermionsinteractingstronglyatombose-fermibosons
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Strongly interacting one-dimensional (1D) Bose-Fermi mixtures form a tunable XXZ spin chain. Within the spin-chain model developed here, all properties of these systems can be calculated from states representing the ordering of the bosons and fermions within the atom chain and from the ground-state wave function of spinless noninteracting fermions. We validate the model by means of an exact diagonalization of the full few-body Hamiltonian in the strongly interacting regime. Using the model, we explore the phase diagram of the atom chain as a function of the boson-boson (BB) and boson-fermion (BF) interaction strengths and calculate the densities, momentum distributions, and trap-level occupancies for up to 17 particles. In particular, we find antiferromagnetic (AFM) and ferromagnetic (FM) order and a demixing of the bosons and fermions in certain interaction regimes. We find, however, no demixing for equally strong BB and BF interactions in agreement with earlier calculations that combined the Bethe ansatz with a local-density approximation.

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