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Twistor sigma models for quaternionic geometry and graviton scattering

Abstract:
We reformulate the twistor construction for hyper- and quaternion-Kähler manifolds, introducing new sigma models that compute scalar potentials for the geometry. These sigma models have the twistor space of the quaternionic manifold as their target and encode finite non-linear perturbations of the flat structures. In the hyperkähler case our twistor sigma models compute both Plebanski fundamental forms (including the Kähler potential), while in the quaternion-Kähler setting the twistor sigma model computes the Kähler potential for the hyperkähler structure on non-projective twistor space.
In four-dimensions, one of the models provides the generating functional of tree-level MHV graviton scattering amplitudes; perturbations of the hyperkähler structure corresponding to positive helicity gravitons. The sigma model’s perturbation theory gives rise to a sum of tree diagrams observed previously in the literature, and their summation via a matrix tree theorem gives a firstprinciples derivation of Hodges’ formula for MHV graviton amplitudes directly from general relativity. We generalise the twistor sigma model to higher-degree (defined in the first case with a cosmological constant), giving a new generating principle for the full tree-level graviton S-matrix.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.4310/atmp.2023.v27.n3.a1

Authors


More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Mathematical Institute
Oxford college:
St Peter's College
Role:
Author
ORCID:
0000-0003-2464-6730


Publisher:
International Press
Journal:
Advances in Theoretical and Mathematical Physics More from this journal
Volume:
27
Issue:
3
Pages:
623-681
Publication date:
2024-06-06
DOI:
EISSN:
1095-0753
ISSN:
1095-0761


Language:
English
Pubs id:
2008361
Local pid:
pubs:2008361
Deposit date:
2024-10-25

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