Scattering in strong field QED in a non-null background
Patrick Copinger, James P. Edwards, Karthik Rajeev

TL;DR
This paper develops a systematic approach to calculate scattering amplitudes in non-null background electromagnetic fields in strong field QED, extending previous constant-field studies to more realistic laser-plasma conditions.
Contribution
It introduces master formulae for N-photon amplitudes in non-null backgrounds using worldline formalism, accounting for all orders in the non-null parameter.
Findings
Derived master formulae for N-photon amplitudes in non-null backgrounds.
Validated formulae against known results for non-linear Compton scattering.
Explored a special case of non-null constant crossed fields to test the approach.
Abstract
We examine scattering amplitudes for an arbitrary number of photons in a class of non-null background electromagnetic fields, studying tree-level and one-loop amplitudes in scalar and spinor quantum-electrodynamics in backgrounds defined by a gauge field for . Motivated to account for more physically realistic laser-plasma dispersive properties, our approach overcomes prior work studying such amplitudes in a constant background field and relaxes the familiar null criterion assumed for plane waves. Master Formulae for the -photon amplitudes dressed by the non-null background are constructed using the first-quantised worldline formalism, which can systematically account for all orders in the non-null parameter, , treated here as an expansion parameter. These are derived from worldline representations of the…
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