Franz CiceriAxel KleinschmidtSubrabalan MurugesanBindusar Sahoo
A bstract We consider the dimensional reduction of N = (2, 0) conformal supergravity in six dimensions on a two-torus to N = 4 conformal supergravity in four dimensions. At the level of kinematics, the six-dimensional Weyl multiplet is shown to reduce to a mixture of the N = 4 Weyl and vector multiplets, which can be reinterpreted as a new off-shell multiplet of N = 4 conformal supergravity. Similar multiplets have been constructed in other settings and are referred to as dilaton Weyl multiplets. We derive it here for the first time in a maximally supersymmetric context in four dimensions. Furthermore, we present the non-linear relations between all the six- and four-dimensional bosonic and fermionic fields, that are obtained by comparing the off-shell supersymmetry transformation rules.
Casarin, LorenzoKennedy, ChristianTartaglino-Mazzucchelli, Gabriele
Lorenzo CasarinChristian KennedyGabriele Tartaglino‐Mazzucchelli
Alain ConnesBernard de WitAntoine Van ProeyenSergey GukovRafael HernándezPablo MoraAnatoli KlimykAnatoli KlimykIver BrevikAlexander GavrilikMartin SchlichenmaierWładysław MarcinekAndrei KelarevMikhail ShifmanMassimo BianchiDimitry LeitesRolf SchimmrigkPablo MoraJosé de AzcárragaJosé M. IzquierdoVictor O. RivellesStéphan NarisonМасуд ЧайчианWenfeng ChenSilvia PenatiDimitry LeitesRoberto FloreaniniAnatoli KlimykFang LiPeter TrotterRobert MarneliusSteven DuplijWładysław MarcinekSteven DuplijWładysław MarcinekWładysław MarcinekWarren SiegelFang LiPeter TrotterMartin SchlichenmaierSilvia PenatiGert RoepstorffAnatoli KlimykIlya L. ShapiroMalte HenkelSteven Duplij
Eric BergshoeffM. de RooBernard de Wit