Bubble instability of mIIA on $\mathrm{AdS}_4\times S^6$
Abstract
We consider compactifications of massive IIA supergravity on a six-sphere. This setup is known to give rise to non-supersymmetric AdS vacua preserving SO as well as G residual symmetry. Both solutions have a round metric and are supported by the Romans' mass and internal flux. While the SO invariant vacuum is known to be perturbatively unstable, the G invariant one has been found to have a fully stable Kaluza-Klein spectrum. Moreover, it has been shown to be protected against brane-jet instabilities. Motivated by these results, we study possible bubbling solutions connected to the G vacuum, representing non-perturbative instabilities of the latter. We indeed find an instability channel represented by the nucleation of a bubble of nothing dressed up with a homogeneous D2 brane charge distribution in the internal space. Our solution generalizes to the case where is replaced by any six-dimensional nearly-K\"ahler manifold.
Cite
@article{arxiv.2110.08276,
title = {Bubble instability of mIIA on $\mathrm{AdS}_4\times S^6$},
author = {Pieter Bomans and Davide Cassani and Giuseppe Dibitetto and Nicolo Petri},
journal= {arXiv preprint arXiv:2110.08276},
year = {2022}
}
Comments
27 pages, 6 figures. Published version