English

The geometry of ${\cal N}=3$ AdS$_4$ in massive IIA

High Energy Physics - Theory 2018-09-26 v2

Abstract

The geometry of the N=3{\cal N} = 3, SO(4)--invariant, AdS4_4 solution of massive type IIA supergravity that uplifts from the N=3{\cal N} = 3 vacuum of D=4D=4 N=8{\cal N} = 8 dyonic ISO(7) supergravity is investigated. Firstly, a D=4D=4, SO(4)--invariant restricted duality hierarchy is constructed and used to uplift the entire, dynamical SO(4)--invariant sector to massive type IIA. The resulting consistent uplift formulae are used to obtain a new local expression for the N=3{\cal N} = 3 AdS4_4 solution in massive IIA and analyse its geometry. Locally, the internal S6S^6 geometry corresponds to a warped fibration of S2S^2 and a hemisphere of S4S^4. This can be regarded as a warped generalisation of the usual twistor fibration geometry. Finally, the triplet of Killing spinors corresponding to the N=3{\cal N}=3 solution are constructed and shown to obey the massive type IIA Killing spinor equations.

Keywords

Cite

@article{arxiv.1805.04823,
  title  = {The geometry of ${\cal N}=3$ AdS$_4$ in massive IIA},
  author = {G. Bruno De Luca and Gabriele Lo Monaco and Niall T. Macpherson and Alessandro Tomasiello and Oscar Varela},
  journal= {arXiv preprint arXiv:1805.04823},
  year   = {2018}
}

Comments

43 pages. v2: References added and minor typos corrected. Version to be published in JHEP