English

Noether-Wald and Komar charges in supergravity, fermions, and Killing supervectors in superspace

High Energy Physics - Theory 2024-11-05 v1 General Relativity and Quantum Cosmology

Abstract

The supersymmetry properties of Killing vectors and spinors in supergravity theory can be clarified by relating them to Killing supervectors in the supergravity superspace. In the superspace approach it is manifest that supersymmetry 'mixes' a Killing vector with its fermionic spinor 'superpartner' and the Killing equations with the generalization of the Killing spinor equations. The latter reduces to the standard Killing spinor equation, albeit with a fermionic spinor, when the fermionic fields are set to zero. Using these supersymmetry transformations in the spacetime component approach, we construct a Noether-Wald charge of N=1{\cal N}=1, D=4D=4 supergravity with fermionic contributions which is diff-, Lorentz- and supersymmetry-invariant (up to a total derivative). The Killing supervector formalism for the maximal D=11D=11 supergravity and some related issues are also discussed.

Keywords

Cite

@article{arxiv.2411.01020,
  title  = {Noether-Wald and Komar charges in supergravity, fermions, and Killing supervectors in superspace},
  author = {Igor Bandos and Patrick Meessen and Tomás Ortín},
  journal= {arXiv preprint arXiv:2411.01020},
  year   = {2024}
}

Comments

12+ pages. IOP conference style. To appear at IOP Conference Proceedings (ISQS28, Prague, Czech Republic)