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Dynamically assisted Sauter-Schwinger effect - non-perturbative versus perturbative aspects

High Energy Physics - Theory 2017-06-28 v2 High Energy Physics - Phenomenology

Abstract

The Sauter-Schwinger effect predicts the creation of electron-positron pairs out of the quantum vacuum by a strong and slowly varying electric field. This effect can be dynamically assisted by an additional weaker time-dependent field, which may drastically enhance the pair-creation probability. In previous studies, it has been found that the enhancement may crucially depend on the temporal shape of this weaker pulse, e.g., a Gaussian profile exp{(ωt)2}\exp\{-(\omega t)^2\} or a Sauter pulse 1/cosh2(ωt)1/\cosh^2(\omega t) behave quite differently. In order to understand this difference, we make a perturbative expansion in terms of the weaker field while treating the strong electric field non-perturbatively. For a large class of profiles including the Sauter pulse, already the sum of the zeroth-order and the first-order amplitudes of this perturbative expansion yields good agreement. For other cases, such as a Gaussian or sinusoidal profile, this is not true in general and higher orders can yield the dominant contribution - where the dominant order depends on the chosen parameters. Our findings are confirmed by numerical simulations and help us to sort previous results into a bigger picture.

Keywords

Cite

@article{arxiv.1703.09203,
  title  = {Dynamically assisted Sauter-Schwinger effect - non-perturbative versus perturbative aspects},
  author = {Greger Torgrimsson and Christian Schneider and Johannes Oertel and Ralf Schützhold},
  journal= {arXiv preprint arXiv:1703.09203},
  year   = {2017}
}

Comments

25 pages, 6 figures. Version 2: minor changes to improve presentation, matches journal version

R2 v1 2026-06-22T18:58:18.214Z