$K\to\pi\gamma^*\gamma^*$ transitions at leading order and beyond
Tom\'a\v{s} Husek (Charles U., Birmingham U.)

TL;DR
This paper presents a comprehensive calculation of the $K o ext{pi}\gamma^*\gamma^*$ transition amplitude at leading order and beyond, providing essential inputs for rare decay phenomenology and experimental analyses.
Contribution
It offers the first complete leading-order calculation of the doubly off-shell $K o ext{pi}\gamma^*\gamma^*$ amplitude, including effects beyond leading order and unitarity corrections.
Findings
Explicit analytical results for the leading-order amplitude.
Inclusion of effects beyond leading order and unitarity corrections.
Analysis of dependence on $K ext{pi}PP$ vertex parameters.
Abstract
The transition amplitude of a kaon to a pion and two off-shell photons is studied. First, it is computed at leading order (one-loop level) of the Chiral Perturbation Theory expansion. Explicit analytical results for the leading-order amplitude are presented, constituting the first complete calculation for the doubly off-shell case. Subsequently, it is reevaluated by employing a refined diagrammatic notation and a generic ansatz incorporating effects beyond leading order. The dependence on the underlying vertex parameters is analyzed. This offers valuable insights into amplitude properties and allows inclusion of unitarity corrections from , yielding the complete amplitude structure. Both the charged and neutral channels are treated in parallel. The presented results provide crucial input for phenomenological studies of related rare decays…
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