English

An $\omega$ Deformation of Gauged STU Supergravity

High Energy Physics - Theory 2014-05-01 v3

Abstract

Four-dimensional N=2{\cal N}=2 gauged STU supergravity is a consistent truncation of the standard N=8{\cal N}=8 gauged SO(8)SO(8) supergravity in which just the four U(1)U(1) gauge fields in the Cartan subgroup of SO(8)SO(8) are retained. One of these is the graviphoton in the N=2{\cal N}=2 supergravity multiplet and the other three lie in three vector multiplets. In this paper we carry out the analogous consistent truncation of the newly-discovered family of ω\omega-deformed N=8{\cal N}=8 gauged SO(8)SO(8) supergravities, thereby obtaining a family of ω\omega-deformed STU gauged supergravities. Unlike in some other truncations of the deformed N=8{\cal N}=8 supergravity that have been considered, here the scalar potential of the deformed STU theory is independent of the ω\omega parameter. However, it enters in the scalar couplings in the gauge-field kinetic terms, and it is non-trivial because of the minimal couplings of the fermion fields to the gauge potentials. We discuss the supersymmetry transformation rules in the ω\omega-deformed supergravities, and present some examples of black hole solutions.

Keywords

Cite

@article{arxiv.1402.1994,
  title  = {An $\omega$ Deformation of Gauged STU Supergravity},
  author = {H. Lu and Y. Pang and C. N. Pope},
  journal= {arXiv preprint arXiv:1402.1994},
  year   = {2014}
}

Comments

31 pages. Derivation of the range of \omega corrected; discussion of supersymmetry of solutions extended, and a reference added