paper

You've got a Freund--Rubin in Me: The Aretakis Instability of Extremal Black Branes

arXiv:2507.12529

Abstract

We investigate how the Aretakis instability affects non-dilatonic extremal black -branes by focusing on their near-horizon geometry. Crucially, the strength of the instability, \textit{i.e.} the number of transverse derivatives needed to see non-decay/blow-up of fields on the horizon at late null time, is given by the scaling dimensions with respect to the near-horizon -factor. This renders the problem of determining the severity of the Aretakis instability equivalent to computing the Kaluza--Klein spectrum of fields on Freund--Rubin spaces. We use this to argue that non-dilatonic extremal black branes suffer from the Aretakis instability even in the absence of additional fields -- we find that this is weaker than for extremal black holes. We also argue that the scaling dimensions determine the smoothness of stationary deformations to the original black brane background -- here, our findings indicate that generically more modes can lead to worse curvature singularities compared to extremal black holes.

26 pages + appendices, 3 figures; v2: typos corrected; v3: made clarifications in section 3