中文

4D de Sitter 从6D带Green-Schwarz反算子

高能物理 - 理论 2025-10-15 v1

摘要

Taking into account the Green-Schwarz anomaly counterterm in R-symmetry gauged N=(1,0)N=(1,0) supergravity in six dimensions, and the associated modification in the Maxwell kinetic term and potential, we observe that the theory admits half-supersymmetric Minkowski4×S2_4\times S^2 and non-supersymmetric dS4×S2_4 \times S^2 as exact solutions with a monopole on S2S^2. The monopole charge and the anomaly coefficients play key roles in the vacuum structure and it turns out that a diagonal gauging in which an admixture of an external U(1)U(1) with the R-symmetry U(1)RU(1)_R is needed for the de Sitter solutions to exist. We determine the full Kaluza-Klein spectrum for both vacua. The spectrum is unitary in the Minkowski case but in the case of de Sitter vacuum, two scalars violate the Higuchi unitarity bound, and they represent two tachyonic states, one from the dilaton and the other from the volume of the internal space. We show that turning on small perturbations of the tachyonic modes around the dS4×S2_4\times S^2 triggers a flow evolving towards Mink4×S2_4\times S^2 with the minimal potential energy. We also find a nonsupersymmetric AdS4×S2_4\times S^2 solution, when we turn on a flux associated with external U(1)U(1) gauge field only, and show that the phenomenon of scale separation is realized.

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引用

@article{arxiv.2510.11794,
  title  = {4D de Sitter from 6D gauged supergravity with Green-Schwarz counterterm},
  author = {Xu Guo and Yi Pang and Ergin Sezgin},
  journal= {arXiv preprint arXiv:2510.11794},
  year   = {2025}
}

备注

44 pages, 5 figures