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High-Energy Recollision Processes of Laser-Generated Electron-Positron Pairs

High Energy Physics - Phenomenology 2015-04-10 v2 Atomic Physics

Abstract

Two oppositely charged particles created within a microscopic space-time region can be separated, accelerated over a much larger distance, and brought to a recollision by a laser field. Consequently, new reactions become feasible, where the energy absorbed by the particles is efficiently released. By investigating the laser-dressed polarization operator, we identify a new contribution describing high-energy recollisions experienced by an electron-positron pair generated by pure light when a gamma photon impinges on an intense, linearly polarized laser pulse. The energy absorbed in the recollision process over the macroscopic laser wavelength corresponds to a large number of laser photons and can be exploited to prime high-energy reactions. Thus, the recollision contribution to the polarization operator differs qualitatively and quantitatively from the well-known one, describing the annihilation of an electron-positron pair within the microscopic formation region.

Keywords

Cite

@article{arxiv.1407.0188,
  title  = {High-Energy Recollision Processes of Laser-Generated Electron-Positron Pairs},
  author = {Sebastian Meuren and Karen Z. Hatsagortsyan and Christoph H. Keitel and Antonino Di Piazza},
  journal= {arXiv preprint arXiv:1407.0188},
  year   = {2015}
}

Comments

7 pages, 4 figures