We study a resonant Bose-Fermi mixture at zero temperature by using the fixed-node diffusion Monte Carlo method. We explore the system from weak to strong boson-fermion interaction, for different concentrations of the bosons relative to the fermion component. We focus on the case where the boson density n_B is smaller than the fermion density n_F , for which a first-order quantum phase transition is found from a state with condensed bosons immersed in a Fermi sea, to a Fermi-Fermi mixture of composite fermions and unpaired fermions. We obtain the equation of state and the phase diagram, and we find that the region of phase separation shrinks to zero for vanishing n_B .

Quantum Monte Carlo study of a resonant bose-fermi mixture / G. Bertaina, E. Fratini, S. Giorgini, P. Pieri. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 110:11(2013), pp. 5303.1-5303.5. [10.1103/PhysRevLett.110.115303]

Quantum Monte Carlo study of a resonant bose-fermi mixture

G. Bertaina
Primo
;
2013

Abstract

We study a resonant Bose-Fermi mixture at zero temperature by using the fixed-node diffusion Monte Carlo method. We explore the system from weak to strong boson-fermion interaction, for different concentrations of the bosons relative to the fermion component. We focus on the case where the boson density n_B is smaller than the fermion density n_F , for which a first-order quantum phase transition is found from a state with condensed bosons immersed in a Fermi sea, to a Fermi-Fermi mixture of composite fermions and unpaired fermions. We obtain the equation of state and the phase diagram, and we find that the region of phase separation shrinks to zero for vanishing n_B .
Quantum Monte Carlo; ultracold gases; quantum phase transitions; atomic mixtures
Settore FIS/03 - Fisica della Materia
Settore FIS/02 - Fisica Teorica, Modelli e Metodi Matematici
2013
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/250770
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