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Renormalization-group approach to the infrared behavior of a zero-temperature Bose system
2004
Physical Review B
We exploit the renormalization-group approach to establish the exact infrared behavior of an interacting Bose system at zero temperature. The local-gauge symmetry in the broken-symmetry phase is implemented through the associated Ward identities, which reduce the number of independent running couplings to a single one. For this coupling the ϵ-expansion can be controlled to all orders in ϵ (=3-d). For spatial dimensions 1 < d ≤ 3 the Bogoliubov fixed point is unstable towards a different fixed
doi:10.1103/physrevb.69.024513
fatcat:cqx5of72drcpfbu7cnv5orwl3a