4.6 Article

Modified Fermi sphere, pairing gap, and critical temperature for the BCS-BEC crossover

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PHYSICAL REVIEW A
卷 81, 期 6, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.81.063619

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  1. DFG [FOR 723, GK1523/1]

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We investigate the phase diagram of two-component fermions in the BCS-BEC (Bose-Einstein condensate) crossover. Using functional renormalization-group equations we calculate the effect of quantum fluctuations on the fermionic self-energy parametrized by a wave-function renormalization, an effective Fermi radius, and the gap. This allows us to follow the modifications of the Fermi surface and the dispersion relation for fermionic excitations throughout the whole crossover region. We also determine the critical temperature of the second-order phase transition to superfluidity. Our results are in agreement with BCS theory including Gorkov's correction for a small negative scattering length a and with an interacting Bose gas for a small positive a. At the unitarity point the result for the gap at zero temperature agrees well with quantum Monte Carlo simulations, while the critical temperature differs.

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