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Critical temperature and thermodynamics of attractive fermions at unitarity

The unitarity regime of the BCS-BEC crossover can be realized by diluting a system of two-component lattice fermions with an on-site attractive interaction. We perform a systematic-error-free finite-temperature simulation of this system by diagrammatic determinant Monte Carlo method. The critical te...

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Published in:Physical review letters 2006-04, Vol.96 (16), p.160402-160402, Article 160402
Main Authors: Burovski, Evgeni, Prokof'ev, Nikolay, Svistunov, Boris, Troyer, Matthias
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cited_by cdi_FETCH-LOGICAL-c448t-12fe789d4a65c77a2f652cc9a6a32c4f824c1599218fcdfbe43bbe023000e9f53
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creator Burovski, Evgeni
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description The unitarity regime of the BCS-BEC crossover can be realized by diluting a system of two-component lattice fermions with an on-site attractive interaction. We perform a systematic-error-free finite-temperature simulation of this system by diagrammatic determinant Monte Carlo method. The critical temperature in units of Fermi energy is found to be T(C)/epsilonF=0.152(7). We also report the behavior of the thermodynamic functions, and discuss the issues of thermometry of ultracold Fermi gases.
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subjects BCS THEORY
BOSE-EINSTEIN CONDENSATION
CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY
CRITICAL TEMPERATURE
ERRORS
FERMI GAS
FERMIONS
MONTE CARLO METHOD
SIMULATION
THERMODYNAMICS
UNITARITY
title Critical temperature and thermodynamics of attractive fermions at unitarity
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