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Spinorial geometry, off-shell Killing spinor identities and higher derivative 5D supergravities

Academic Article
Publication Date:
2018
Citation:
Spinorial geometry, off-shell Killing spinor identities and higher derivative 5D supergravities / F. Bonetti, D. Klemm, W.A. Sabra, P. Sloane. - In: JOURNAL OF HIGH ENERGY PHYSICS. - ISSN 1029-8479. - 2018:8(2018), pp. 121.1-121.67. [10.1007/JHEP08(2018)121]
abstract:
Killing spinor identities relate components of equations of motion to each other for supersymmetric backgrounds. The only input required is the field content and the supersymmetry transformations of the fields, as long as an on-shell supersymmetrization of the action without additional fields exists. If we consider off-shell supersymmetry it is clear that the same relations will occur between components of the equations of motion independently of the specific action considered, in particular the Killing spinor identities can be derived for arbitrary, including higher derivative, supergravities, with a specified matter content. We give the Killing spinor identities for five-dimensional N= 2 ungauged supergravities coupled to Abelian vector multiplets, and then using spinorial geometry techniques so that we have explicit representatives for the spinors, we discuss the particular case of the time-like class of solutions to theories with perturbative corrections at the four derivative level. We also discuss the maximally supersymmetric solutions in the general off-shell case.
IRIS type:
01 - Articolo su periodico
Keywords:
Black Holes in String Theory; Flux compactifications; Supergravity Models; Supersymmetry and Duality; High Energy Physics - Theory; High Energy Physics - Theory; Nuclear and High Energy Physics
List of contributors:
F. Bonetti, D. Klemm, W.A. Sabra, P. Sloane
Authors of the University:
KLEMM SILKE ( author )
Link to information sheet:
https://air.unimi.it/handle/2434/618142
Full Text:
https://air.unimi.it/retrieve/handle/2434/618142/1192874/10.1007_JHEP08(2018)121.pdf
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