High-order harmonic generation in an electron-positron-ion plasma

W. L. Zhang, T. Grismayer, K. M. Schoeffler, R. A. Fonseca, and L. O. Silva
Phys. Rev. E 103, 013206 – Published 11 January 2021

Abstract

The laser interaction with an electron-positron-ion mixed plasma is studied from the perspective of the associated high-order harmonic generation. For an idealized mixed plasma which is assumed with a sharp plasma-vacuum interface and uniform density distribution, when it is irradiated by a weakly relativistic laser pulse, well-defined signals at harmonics of the plasma frequency in the harmonic spectrum are observed. These characteristic signals are attributed to the inverse two-plasmon decay of the counterpropagating monochromatic plasma waves which are excited by the energetic electrons and the positron beam accelerated by the laser. Particle-in-cell simulations show the signal at twice the plasma frequency can be observed for a pair density as low as 105 of the plasma density. In the self-consistent scenario of pair production by an ultraintense laser striking a solid target, particle-in-cell simulations, which account for quantum electrodynamic effects (photon emission and pair production), show that dense (greater than the relativistically corrected critical density) and hot pair plasmas can be created. The harmonic spectrum shows weak low-order harmonics, indicating a high laser absorption due to quantum electrodynamic effects. The characteristic signals at harmonics of the plasma frequency are absent, because broadband plasma waves are excited due to the high plasma inhomogeneity introduced by the interaction. However, the high-frequency harmonics are enhanced due to the high-frequency modulations from the direct laser coupling with created pair plasmas.

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  • Received 11 December 2019
  • Revised 31 October 2020
  • Accepted 8 December 2020

DOI:https://doi.org/10.1103/PhysRevE.103.013206

©2021 American Physical Society

Physics Subject Headings (PhySH)

Accelerators & BeamsPlasma Physics

Authors & Affiliations

W. L. Zhang1,*, T. Grismayer1, K. M. Schoeffler1, R. A. Fonseca1,2, and L. O. Silva1,†

  • 1GoLP/Instituto de Plasmas e Fusão Nuclear, Instituto Superior Técnico, Universidade de Lisboa, Lisboa, Portugal
  • 2DCTI/ISCTE–Instituto Universitário de Lisboa, 1649-026 Lisboa, Portugal

  • *Corresponding author: wenlong.zhang@tecnico.ulisboa.pt
  • Corresponding author: luis.silva@tecnico.ulisboa.pt

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Issue

Vol. 103, Iss. 1 — January 2021

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