English

Consistent ${\cal N}=8$ truncation of massive IIA on $S^6$

High Energy Physics - Theory 2016-01-27 v2 General Relativity and Quantum Cosmology

Abstract

Massive type IIA supergravity is shown to admit a consistent truncation on the six-sphere to maximal supergravity in four dimensions with a dyonic ISO(7) gauging. We obtain the complete, non-linear embedding of all the D=4D=4 fields into the IIA metric and form potentials, and show its consistency. We first rewrite the IIA theory in an SO(1,3)×SL(7)\textrm{SO}(1,3) \times \textrm{SL}(7)--covariant way. Then, we employ an N=8{\cal N}=8 SL(7)--covariant restriction of the D=4D=4 tensor hierarchy in order to find the full embedding. The redundant D=4D=4 degrees of freedom introduced by the tensor hierarchy can be eliminated by writing the embedding in terms of the field strengths and exploiting the restricted duality hierarchy. In particular, closed expressions for the Freund-Rubin term are found using this technique which reveal a pattern valid for other truncations. Finally, we show that the present N=8{\cal N}=8 truncation of massive IIA on S6S^6 and the N=2{\cal N}=2 truncation obtained when S6S^6 is equipped with its nearly-K\"ahler structure, overlap in the N=1{\cal N}=1, G2_2--invariant sector of the former.

Keywords

Cite

@article{arxiv.1509.02526,
  title  = {Consistent ${\cal N}=8$ truncation of massive IIA on $S^6$},
  author = {Adolfo Guarino and Oscar Varela},
  journal= {arXiv preprint arXiv:1509.02526},
  year   = {2016}
}

Comments

43 pages; v2: minor corrections and references added. Version to be published in JHEP