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New $F^4$ invariants in five-dimensional supergravity

High Energy Physics - Theory 2026-03-20 v1

Abstract

We consider four-derivative superinvariants of five-dimensional N=2\mathcal N=2 supergravity coupled to nv2n_v\le 2 vector multiplets, which we obtain from both the superconformal tensor calculus approach and dimensional reduction. For the minimal case, with no vector multiplets, it is known that there is a unique four-derivative superinvariant. However, for the case of one vector multiplet, after field redefinitions, we find that there are three independent superinvariants, one of which is a vector superinvariant that does not contain any curvatures and takes the form of a supersymmetrization of F4F^4. Similarly, for the two vector multiplet case, corresponding to the STU model, we find three gravitational superinvariants and two F4F^4-type vector superinvariants. Moreover, we find that these vector superinvariants do not affect the two- and three-charge static BPS black hole solutions. We further consider the rigid limit to N=2\mathcal N=2 super-Yang-Mills and use this to conjecture a family of vector superinvariants for five-dimensional N=2\mathcal N=2 supergravity coupled to an arbitrary number of vector multiplets.

Keywords

Cite

@article{arxiv.2603.18180,
  title  = {New $F^4$ invariants in five-dimensional supergravity},
  author = {Yide Cai and Sabarenath Jayaprakash and James T. Liu and Yi Pang and Robert J. Saskowski},
  journal= {arXiv preprint arXiv:2603.18180},
  year   = {2026}
}

Comments

46 pages

R2 v1 2026-07-01T11:26:58.311Z