Holographic solutions from 5D $SO(2)\times ISO(3)$ $N=4$ gauged supergravity
Abstract
We study various types of holographic solutions from five-dimensional gauged supergravity coupled to three vector multiplets with gauge group. This gauged supergravity can be obtained from the maximal gauged supergravity in seven dimensions on a Riemann surface. For a negatively curved Rimann surface , the resulting five-dimensional gauged supergravity admits a supersymmetric critical point. This vacuum is dual to an superconformal field theory (SCFT) arising from M5-branes wrapped on . We study holographic RG flow solutions describing deformations of this SCFT by turning on relevant, marginal and irrelevant operators to non-conformal phases in the IR. Solutions describing conformal interfaces between these non-conformal phases and singular boundaries are also given. We finally study a number of supersymmetric black string and black hole solutions holographically dual to RG flows across dimensions from the SCFT to two-dimensional SCFTs and superconformal quantum mechanics in the IR. A number of solutions describing black strings and black holes in asymptotically domain wall space-time is also found. All of the solutions can be uplifted to M-theory by a consistent truncation on .
Keywords
Cite
@article{arxiv.2510.08258,
title = {Holographic solutions from 5D $SO(2)\times ISO(3)$ $N=4$ gauged supergravity},
author = {Parinya Karndumri},
journal= {arXiv preprint arXiv:2510.08258},
year = {2025}
}
Comments
41 pages, 10 figures, typos corrected and more black string and black hole solutions added