Four dimensional "old minimal" N=2 supersymmetrization of R^4
arXiv:hep-th/0212271 · doi:10.1088/1126-6708/2003/07/057
Abstract
We write in superspace the lagrangian containing the fourth power of the Weyl tensor in the "old minimal" d=4, N=2 supergravity, without local SO(2) symmetry. Using gauge completion, we analyze the lagrangian in components. We find out that the auxiliary fields which belong to the Weyl and compensating vector multiplets have derivative terms and therefore cannot be eliminated on-shell. Only the auxiliary fields which belong to the compensating nonlinear multiplet do not get derivatives and could still be eliminated; we check that this is possible in the leading terms of the lagrangian. We compare this result to the similar one of "old minimal" N=1 supergravity and we comment on possible generalizations to other versions of N=1,2 supergravity.
31 pages, no figures. Minor corrections. Details of the full calculation included as an appendix. Reference added
References in corpus (1)
Cited by in corpus (7)
- New higher-derivative invariants in N=2 supergravity and the Gauss-Bonnet term
- Higher Derivative Supergravities in Diverse Dimensions
- N=2 higher-derivative couplings from strings
- Type II and heterotic one loop string effective actions in four dimensions
- N=2 Supergravity Counterterms, Off and On Shell
- Off-shell invariants of linearized supergravity in the harmonic approach
- One loop superstring effective actions and N=8 supergravity