Please use this identifier to cite or link to this item: https://hdl.handle.net/10216/131316
Author(s): L. M. Martelo
N. Andrei
Title: "Exact Solution for an 1D Boson-Fermion Model and application to ultra-cold atoms"
Issue Date: 2012-10-10
Abstract: The progress in ultra-cold atoms experiments allowing to tune fermionic systems through a Feshbach resonance where itinerant fermionic atoms may form tightly bound pairs ("bosonic" molecules) [1,2] has led to a renewed theoretical interest in boson-fermion models. We study a 1D boson fermion resonance model describing itinerant spin-1/2 fermions and itinerant scalar bosons coupled through a local interaction of strength g, which describes the binding of a pair of opposite spin fermions to form a scalar boson and the reverse process. The model also includes a detuning term characterized by a detuning parameter ν. It is found that the model has an exact solution by Bethe Ansatz.
URI: https://hdl.handle.net/10216/131316
Document Type: Poster em Conferência Internacional
Rights: openAccess
Appears in Collections:FEUP - Poster em Conferência Internacional

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