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Strongly correlated Fermi-Bose mixtures in disordered optical lattices (2005)

Abstract
We investigate theoretically the low-temperature physics of a two-component ultracold mixture of bosons and fermions in disordered optical lattices. We focus on the strongly correlated regime. We show that, under specific conditions, composite fermions, made of one fermion plus one bosonic hole, form. The composite picture is used to derive an effective Hamiltonian whose parameters can be controlled via the boson-boson and the boson-fermion interactions, the tunneling terms and the inhomogeneities. We finally investigate the quantum phase diagram of the composite fermions and we show that it corresponds to the formation of Fermi glasses, spin glasses, and quantum percolation regimes.

Publication details
Download http://hal.ccsd.cnrs.fr/ccsd-00014953/en/
Source http://hal.ccsd.cnrs.fr/docs/00/06/17/76/PDF/fermibose.pdf
Publisher HAL - CCSd - CNRS
Contributors Laurent Sanchez-Palencia
Repository CCSd/HAL : e-articles server (based on gBUS) (France)
Keywords Physics/Condensed Matter/Other
Language Englisch
Coverage Bose – Fermi – mixtures – optical lattice – laser cooling – ultracold – Bose-Einstein – condensation – quantum phase – transition