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| Format: | Preprint |
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2025
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| Accès en ligne: | https://arxiv.org/abs/2509.11216 |
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| _version_ | 1866914232242536448 |
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| author | Karndumri, Parinya Nuchino, Patharadanai |
| author_facet | Karndumri, Parinya Nuchino, Patharadanai |
| contents | We study a large class of domain wall solutions with $Mkw_3\times Σ^2$ and $Mkw_2\times Σ^3$ slices from maximal gauged supergravity in six dimensions. $Σ^2$ and $Σ^3$ are given by a Riemann surface and a $3$-manifold with constant curvature while $Mkw_{3,2}$ denotes three/two-dimensional Minkowski space. We consider the maximal gauged supergravity with $CSO(p,q,5-p-q)$ and $CSO(p,q,4-p-q)\ltimes \mathbb{R}^4$ gauge groups arising from an $S^1$ reduction of seven-dimensional maximal gauged supergravity with $CSO(p,q,5-p-q)$ and $CSO(p,q,4-p-q)$ gauge groups. The two types of gauge group can be embedded in type IIA theory via consistent truncations on $H^{p,q}\times \mathbb{R}^{5-p-q}$ and $H^{p,q}\times\mathbb{R}^{4-p-q}\times S^1$, respectively. By performing topological twists on $Σ^2$ and $Σ^3$, we find a number of solutions interpolating between locally flat domain walls in the UV and curved domain walls with $Mkw_3\times Σ^2$ and $Mkw_2\times Σ^3$ slices in the IR. Many solutions admit physical IR singularities and can be interpreted as holographic RG flows across dimensions from five-dimensional field theories to three- and two-dimensional non-conformal field theories in the IR. Upon uplifted to type IIA theory, we expect the solutions to describe brane configurations involving D4-branes wrapped on $Σ^2$ and $Σ^3$. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2509_11216 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Wrapped D4-branes from maximal 6D gauged supergravity Karndumri, Parinya Nuchino, Patharadanai High Energy Physics - Theory We study a large class of domain wall solutions with $Mkw_3\times Σ^2$ and $Mkw_2\times Σ^3$ slices from maximal gauged supergravity in six dimensions. $Σ^2$ and $Σ^3$ are given by a Riemann surface and a $3$-manifold with constant curvature while $Mkw_{3,2}$ denotes three/two-dimensional Minkowski space. We consider the maximal gauged supergravity with $CSO(p,q,5-p-q)$ and $CSO(p,q,4-p-q)\ltimes \mathbb{R}^4$ gauge groups arising from an $S^1$ reduction of seven-dimensional maximal gauged supergravity with $CSO(p,q,5-p-q)$ and $CSO(p,q,4-p-q)$ gauge groups. The two types of gauge group can be embedded in type IIA theory via consistent truncations on $H^{p,q}\times \mathbb{R}^{5-p-q}$ and $H^{p,q}\times\mathbb{R}^{4-p-q}\times S^1$, respectively. By performing topological twists on $Σ^2$ and $Σ^3$, we find a number of solutions interpolating between locally flat domain walls in the UV and curved domain walls with $Mkw_3\times Σ^2$ and $Mkw_2\times Σ^3$ slices in the IR. Many solutions admit physical IR singularities and can be interpreted as holographic RG flows across dimensions from five-dimensional field theories to three- and two-dimensional non-conformal field theories in the IR. Upon uplifted to type IIA theory, we expect the solutions to describe brane configurations involving D4-branes wrapped on $Σ^2$ and $Σ^3$. |
| title | Wrapped D4-branes from maximal 6D gauged supergravity |
| topic | High Energy Physics - Theory |
| url | https://arxiv.org/abs/2509.11216 |