Infrared structures of scattering on self-dual radiative backgrounds
High Energy Physics - Theory
High Energy Physics - Theory (hep-th)
Nuclear and particle physics. Atomic energy. Radioactivity
0103 physical sciences
FOS: Physical sciences
QC770-798
Conformal and W Symmetry
Scattering Amplitudes
01 natural sciences
Sigma Models
DOI:
10.1007/jhep06(2024)076
Publication Date:
2024-06-19T07:02:58Z
AUTHORS (3)
ABSTRACT
Abstract
The scattering of gluons and gravitons in trivial backgrounds is endowed with many surprising infrared features which have interesting conformal interpretations on the two-dimensional celestial sphere. However, the fate of these structures in more general asymptotically flat backgrounds is far from clear. In this paper, we consider holomorphic infrared structures in the presence of non-perturbative, self-dual background gauge and gravitational fields which are determined by freely specified radiative data. We make use of explicit formulae for tree-level gluon and graviton scattering in these self-dual radiative backgrounds, as well as chiral twistor sigma model descriptions of the classical dynamics. Remarkably, we find that the leading holomorphic part of tree-level collinear splitting functions — or celestial OPEs — and infinite-dimensional chiral soft algebras are undeformed by the background. We also compute all-order holomorphic celestial OPEs in the MHV sectors of gauge theory and gravity.
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