Non-relativistic supersymmetry on curved three-manifolds

A bstract We construct explicit examples of non-relativistic supersymmetric field theories on curved Newton-Cartan three-manifolds. These results are obtained by performing a null reduction of four-dimensional supersymmetric field theories on Lorentzian manifolds and the Killing spinor equations tha...

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Veröffentlicht in:The journal of high energy physics 2020-07, Vol.2020 (7), p.1-45, Article 175
Hauptverfasser: Bergshoeff, E.A., Chatzistavrakidis, A., Lahnsteiner, J., Romano, L., Rosseel, J.
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Sprache:eng
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Zusammenfassung:A bstract We construct explicit examples of non-relativistic supersymmetric field theories on curved Newton-Cartan three-manifolds. These results are obtained by performing a null reduction of four-dimensional supersymmetric field theories on Lorentzian manifolds and the Killing spinor equations that their supersymmetry parameters obey. This gives rise to a set of algebraic and differential Killing spinor equations that are obeyed by the supersymmetry parameters of the resulting three-dimensional non-relativistic field theories. We derive necessary and sufficient conditions that determine whether a Newton-Cartan background admits non-trivial solutions of these Killing spinor equations. Two classes of examples of Newton-Cartan backgrounds that obey these conditions are discussed. The first class is characterised by an integrable foliation, corresponding to so-called twistless torsional geometries, and includes manifolds whose spatial slices are isomorphic to the Poincaŕe disc. The second class of examples has a non-integrable foliation structure and corresponds to contact manifolds.
ISSN:1029-8479
1029-8479
DOI:10.1007/JHEP07(2020)175