\begin{document}$ {a}_{0}=350 $\end{document}(\begin{document}$ {a}_{0} $\end{document} is the normalized laser vector potential), the energy of the electrons directly accelerated by the laser is enhanced to 32 GeV. In contrast, under the same laser intensity, the energy of the electrons accelerated by ponderomotive force is only 0.35 GeV. The research findings indicate that the strong laser with peak power around 10 PW can directly accelerate electrons to approximately 30 GeV. Additionally, this study outlines the optimal initial conditions for injecting electrons into the laser field and the final electron energy within the phase-locked acceleration mechanism, thereby establishing a calibration relationship with the laser field intensity. Given the continual enhancement of laser intensity and the potential application of the laser phase-locked electron acceleration mechanism to positron acceleration, this research holds promise for its implementation in fields such as miniaturized positron-electron colliders and high-energy gamma-ray sources."> - 必威体育下载

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Zhu Han-Chen, Zhou Chu-Liang, Li Xiao-Feng, Tian Ye, Li Ru-Xin
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  • Abstract views:140
  • PDF Downloads:5
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Publishing process
  • Received Date:09 May 2024
  • Accepted Date:13 September 2024
  • Available Online:19 September 2024
  • Published Online:05 October 2024

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