<p>This study examines the influence of various physical parameters on electron acceleration dynamics by employing electrons subjected to the fields produced by a Cosh-Gaussian laser and a magnetic wiggler. This study investigates the influence of the laser's electric field amplitude, laser beam waist, magnetic wiggler field strength, propagation constant of the wiggler field, and the decentered parameter of the Cosh function on the mechanism of electron acceleration. This study employs theoretical modelling to analyze these parameters, providing insights into the optimization of electron acceleration schemes. Theoretically, electrons with an energy of 3.22&#xa0;GeV are achieved using optimized parameters. The findings indicate potential applications in advanced accelerators and high-energy physics, where precise control over electron energy gain is crucial for future technological developments.</p>

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Exploring the impact of magnetic wigglers on electron acceleration in vacuum using cosh-Gaussian laser

  • Vivek Sharma,
  • Vishal Thakur

摘要

This study examines the influence of various physical parameters on electron acceleration dynamics by employing electrons subjected to the fields produced by a Cosh-Gaussian laser and a magnetic wiggler. This study investigates the influence of the laser's electric field amplitude, laser beam waist, magnetic wiggler field strength, propagation constant of the wiggler field, and the decentered parameter of the Cosh function on the mechanism of electron acceleration. This study employs theoretical modelling to analyze these parameters, providing insights into the optimization of electron acceleration schemes. Theoretically, electrons with an energy of 3.22 GeV are achieved using optimized parameters. The findings indicate potential applications in advanced accelerators and high-energy physics, where precise control over electron energy gain is crucial for future technological developments.