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Analytical limits for cold atom Bose gases with tunable interactions

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arxiv 1107.3750 v1 pith:PMBMRHV2 submitted 2011-07-19 cond-mat.quant-gas

Analytical limits for cold atom Bose gases with tunable interactions

classification cond-mat.quant-gas
keywords boseloafanalyticalresultsapproximationauxiliarydilutefield
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We discuss the equilibrium properties of dilute Bose gases using a non-perturbative formalism based on auxiliary fields related to the normal and anomalous densities. We show analytically that for a dilute Bose gas of weakly-interacting particles at zero temperature, the leading-order auxiliary field (LOAF) approximation leads to well-known analytical results. Close to the critical point the LOAF predictions are the same as those obtained using an effective field theory in the large-N approximation. We also report analytical approximations for the LOAF results in the unitarity limit, which compare favorably with our numerical results. LOAF predicts that the equation of state for the Bose gas in the unitarity limit is E / (p V) = 1, unlike the case of the Fermi gas when E / (p V) = 3/2.

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