Supersymmetric completion of Gauss-Bonnet combination in five dimensions
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Publication:302790
DOI10.1007/JHEP03(2013)158zbMath1342.83284arXiv1301.6622MaRDI QIDQ302790
Publication date: 12 August 2016
Published in: Journal of High Energy Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1301.6622
Supergravity (83E50) Relativistic gravitational theories other than Einstein's, including asymmetric field theories (83D05)
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Cites Work
- Consistent and universal inclusion of the Lorentz Chern-Simons form in \(D=10\), \(N=1\) supergravity theories
- An off-shell formulation for internally gauged \(D=5\), \(\mathcal{N}=2\) supergravity from superconformal methods
- Higher derivative corrections to \(R\)-charged black holes: boundary counterterms and the mass-charge relation
- Higher derivative extension of 6D chiral gauged supergravity
- Superconformal Tensor Calculus in Five Dimensions
- Supersymmetrization ofN=1ten-dimensional supergravity with Lorentz Chern-Simons term
- Off-shell D = 5, ${\mathcal N}$ = 2 Riemann squared supergravity
- Supersymmetric Completion of an R2 Term in Five-Dimensional Supergravity
- Curvatures, Gauss–Bonnet and Chern–Simons multiplets in old-minimal N=1 supergravity
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