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Acceleration of electrons to high energies in a standing wave generated by counterpropagating intense laser pulses with tilted amplitude fronts

机译:通过反向传播具有倾斜振幅前锋的强激光脉冲而产生的驻波中的电子加速到高能

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摘要

The dynamics of an electron in a standing wave generated by two relativistically intense linearly polarized laser pulses with tilted amplitude fronts is studied. The analysis is based on solving numerically the relativistic Newton's equation with the corresponding Lorentz force. A new scheme of laser acceleration of electrons by the direct action of the standing wave is proposed. It is shown that short bunches of electrons with energies reaching several GeV can be created for relativistic laser intensities.
机译:研究了两个相对论强度强的线性偏振激光脉冲在振幅波前倾斜时在驻波中产生的电子动力学。该分析基于用相对应的洛伦兹力数值求解相对论牛顿方程。提出了一种利用驻波的直接作用对电子进行激光加速的新方案。结果表明,相对论激光强度可以产生能量达到数个GeV的短束电子。

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