Nonlinear Breit-Wheeler pair production using polarized photons from inverse Compton scattering
Abstract
Observing multiphoton electron-positron pair production (the nonlinear Breit-Wheeler process) requires high-energy rays to interact with strong electromagnetic fields. In order for these observations to be as precise as possible, the rays would ideally be both mono-energetic and highly polarized. Here we perform Monte Carlo simulations of an experimental configuration that accomplishes this in two stages. First, a multi-GeV electron beam interacts with a moderately intense laser pulse to produce a bright, highly polarized beam of rays by inverse Compton scattering. Second, after removing the primary electrons, these rays collide with another, more intense, laser pulse in order to produce pairs. We show that it is possible to measure the -ray polarization dependence of the nonlinear Breit-Wheeler process in near-term experiments, using a 100-TW class laser and currently available electron beams. Furthermore, it would also be possible to observe harmonic structure and the perturbative-to-nonperturbative transition if such a laser were colocated with a future linear collider.
Cite
@article{arxiv.2411.08559,
title = {Nonlinear Breit-Wheeler pair production using polarized photons from inverse Compton scattering},
author = {Daniel Seipt and Mathias Samuelsson and Tom Blackburn},
journal= {arXiv preprint arXiv:2411.08559},
year = {2024}
}
Comments
10 pages, 6 figures, 1 table