Heat capacity of a two-component superfluid Fermi gas

Physics – Condensed Matter – Soft Condensed Matter

Scientific paper

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Scientific paper

10.1088/0953-4075/37/1/015

We investigate mean-field effects in two- component trapped Fermi gases in the superfluid phase, in the vicinity of s-wave Feshbach resonances. Within the resonance superfluidity approach (Holland et al., 2001) we calculate the ground state energy and the heat capacity as function of temperature. Heat capacity is analyzed for different trap aspect ratios. We find that trap anisotropy is an important factor in determining both the value of heat capacity near the transition temperature and the transition temperature itself.

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