• Laser and Particle Beams
  • Vol. 2023, Issue 1, 9414451 (2023)
Li Ning1, Mu Jie2, Kong Fancun1, and Sergey Pikuz
Author Affiliations
  • 1Merchant Marine College Shanghai Maritime University Shanghai 201306 China
  • 2Center for Ultimate Energy Shanghai Tech University Shanghai 201210 China
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    DOI: 10.1155/2023/9414451 Cite this Article
    Li Ning, Mu Jie, Kong Fancun, Sergey Pikuz. Numerical Studies on Bow Waves in Intense Laser-Plasma Interaction[J]. Laser and Particle Beams, 2023, 2023(1): 9414451 Copy Citation Text show less

    Abstract

    Laser-driven wakefield acceleration (LWFA) has attracted lots of attention in recent years. However, few writers have been able to make systematic research into the bow waves generated along with the wake waves. Research about the bow waves will help to improve the understanding about the motion of the electrons near the wake waves. In addition, the relativistic energetic electron density peaks have great potential in electron acceleration and reflecting flying mirrors. In this paper, the bow waves generated in laser-plasma interactions as well as the effects of different laser and plasma parameters are investigated. Multidimensional particle-in-cell simulations are made to present the wake waves and bow waves by showing the electron density and momentum distribution as well as the electric field along x and y directions. The evolution of the bow wave structure is investigated by measuring the open angle between the bow wave and the wake wave cavity. The angle as well as the peak electron density and transverse momentum is demonstrated with respect to different laser intensities, spot sizes, plasma densities, and preplasma lengths. The density peak emits high-order harmonics up to 150 orders and can be a new kind of “flying mirror” to generate higher order harmonics. The study on the bow waves is important for further investigation on the electron motion around the wake waves, generation of dense electron beams, generation of high-order harmonics, and other research and applications based on the bow waves.
    Li Ning, Mu Jie, Kong Fancun, Sergey Pikuz. Numerical Studies on Bow Waves in Intense Laser-Plasma Interaction[J]. Laser and Particle Beams, 2023, 2023(1): 9414451
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