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March 6, 2026Scientific Reports1 citationsOpen Access

High-energy -photons and pair electrons generation in polarized ultraintense laser fields

SAShivangi AgarwalDGDevki Nandan Gupta

Key Points

  • This research aims to explore the generation of high-energy gamma-photons and pair electrons in polarized ultraintense laser fields.
  • Conducted three-dimensional particle-in-cell simulations
  • Performed polarization-resolved analysis
  • Examined the influence of linear and circular polarization on photon emission and pair production
  • Circular polarization led to higher-energy gamma-photons
  • Observed smoother electron trajectories with circular polarization
  • Breit-Wheeler pair electron production efficiency varied with laser intensity and polarization

Abstract

We demonstrate the generation of high-energy -photons and pair electrons resulting from the interaction of an ultrahigh-intensity laser pulse with a near-critical density plasma target. Through polarization-resolved analysis and three-dimensional particle-in-cell simulations, we investigate how linearly and circularly polarized laser pulses differentially influence photon emission spectra, angular distributions, and pair-production. In our configuration, circular polarization yields higher-energy -photons, attributed to smoother electron trajectories and sustained interaction with the laser field. These -photons subsequently trigger the production of Breit–Wheeler pair electrons, whose efficiency is strongly dependent on both the laser intensity and the polarization state. This study highlights the potential of polarization shaping as a control tool for optimizing gamma-ray sources and QED pair plasma generation in next-generation ultraintense laser facilities.

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Cite This Study

Agarwal et al. (2026) studied this question.

synapsesocial.com/papers/69aa7008531e4c4a9ff5975fhttps://doi.org/10.1038/s41598-026-42431-0
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