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电子俘获源于激光驱动相对论性等离子体波的相互作用。

Electron Trapping from Interactions between Laser-Driven Relativistic Plasma Waves.

机构信息

Department of Physics and Astronomy, University of Nebraska-Lincoln, Lincoln, Nebraska 68588, USA.

Key Laboratory for Laser Plasmas (Ministry of Education) and School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Phys Rev Lett. 2018 Sep 7;121(10):104801. doi: 10.1103/PhysRevLett.121.104801.

Abstract

Interactions of large-amplitude relativistic plasma waves were investigated experimentally by propagating two synchronized ultraintense femtosecond laser pulses in plasma at oblique crossing angles to each other. The electrostatic and electromagnetic fields of the colliding waves acted to preaccelerate and trap electrons via previously predicted, but untested injection mechanisms of ponderomotive drift and wake-wake interference. High-quality energetic electron beams were produced, also revealing valuable new information about plasma-wave dynamics.

摘要

通过在等离子体中以相互倾斜的交叉角传播两个同步的超强飞秒激光脉冲,实验研究了大振幅相对论性等离子体波的相互作用。碰撞波的静电和电磁场通过先前预测但未经测试的动压力漂移和尾迹-尾迹干涉注入机制,对电子进行预加速和捕获。还产生了高质量的高能电子束,这也揭示了有关等离子体波动力学的有价值的新信息。

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