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Large-$N$ expansion for condensation and stability of Bose-Bose mixtures at finite temperatures
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abstract
The two-component mixture of Bose particles with short-range pairwise interaction at finite temperatures in three dimensions is considered. Particularly we examine, by means of the large-$N$ expansion technique, the stability of mixed state below the Bose-Einstein transition point and the temperature dependence of the condensate density for symmetric mixture of Bose gases. The presented analysis reveals the importance of finite-temperature excitations of the non-condensed particles in formation of the phase diagram of two-component Bose systems.
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Shift of the Bose-Einstein condensation transition in the presence of a second atomic species
The critical temperature of a Bose-Einstein condensate is shifted by the presence of a second bosonic species, and this paper provides the shift formulas for both thermal and condensed secondary species.
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