Conserving Gapless Mean-Field Theory of a Multi-Component Bose-Einstein Condensate
Abstract
We develop a mean-field theory for Bose-Einstein condensation of spin-1 atoms with internal degrees of freedom. It is applicable to nonuniform systems at finite temperatures with a plausible feature of satisfying the Hugenholtz-Pines theorem and various conservation laws simultaneously. Using it, we clarify thermodynamic properties and the excitation spectra of a uniform gas. The condensate is confirmed to remain in the same internal state from T=0 up to for both antiferromagnetic and ferromagnetic interactions. The excitation spectra of the antiferromagnetic (ferromagnetic) interaction are found to have only a single gapless mode, contrary to the prediction of the Bogoliubov theory where three (two) of them are gapless. We present a detailed discussion on those single-particle excitations in connection with the collective excitations.
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Cite
@article{arxiv.cond-mat/0608472,
title = {Conserving Gapless Mean-Field Theory of a Multi-Component Bose-Einstein Condensate},
author = {Yoshiyuki Kondo and Takafumi Kita},
journal= {arXiv preprint arXiv:cond-mat/0608472},
year = {2009}
}
Comments
8 pages, 7 figures Minor errors removed