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Local infrared safety in time-ordered perturbation theory

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arxiv 2309.13023 v2 pith:YX6LAZDQ submitted 2023-09-22 hep-ph

classification hep-ph
keywords perturbationtheorytime-orderedinfraredannihilationleptonictoptamplitudes
verification ladder T0 review T1 audit T2 compute T3 formal
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We develop a general expression for weighted cross sections in leptonic annihilation to hadrons based on time-ordered perturbation theory (TOPT). The analytic behavior of the resulting integrals over spatial momenta can be analyzed in the language of Landau equations and infrared (IR) power counting. For any infrared-safe weight, the cancellation of infrared divergences is implemented locally at the integrand level, and in principle can be evaluated numerically in four dimensions. We go on to show that it is possible to eliminate unphysical singularities that appear in time-ordered perturbation theory for arbitrary amplitudes. This is done by reorganizing TOPT into an equivalent form that combines classes of time orderings into a ``partially time-ordered perturbation theory". Applying the formalism to leptonic annihilation, we show how to derive diagrammatic expressions with only physical unitarity cuts.

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Cited by 3 Pith papers

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