首页> 外文期刊>The Astrophysical journal >NONTHERMAL ACCELERATION OF CHARGED PARTICLES DUE TO AN INCOHERENT WAKEFIELD INDUCED BY A LARGE-AMPLITUDE LIGHT PULSE
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NONTHERMAL ACCELERATION OF CHARGED PARTICLES DUE TO AN INCOHERENT WAKEFIELD INDUCED BY A LARGE-AMPLITUDE LIGHT PULSE

机译:大振幅光脉冲引起的尾迹不均会导致带电粒子的非热加速

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摘要

We discuss the acceleration of charged particles in an incoherent wakefield induced by large-amplitude light waves, which are considered to be excited in the upstream region of relativistic perpendicular shock waves. In order to model such shock environments in a laboratory plasma, we substitute an intensive laser pulse for the large-amplitude waves. Performing particle-in-cell simulations, we calculate the energy distribution functions of electrons in various laser and plasma conditions. When the laser intensity is relativistic and the spatial scale of the laser is larger than the electron inertial scale, the electrons are nonthermally accelerated by incoherent wakefields. The distribution functions are universally represented by power-law spectra with an index ~2 independent of the laser intensity and the plasma density.
机译:我们讨论了由大振幅光波引起的非相干尾波场中带电粒子的加速度,该振幅被认为是在相对论垂直冲击波的上游区域被激发的。为了在实验室等离子中模拟这种冲击环境,我们用强激光脉冲代替了大振幅波。通过执行单元中粒子模拟,我们计算了在各种激光和等离子体条件下电子的能量分布函数。当激光强度是相对论的,并且激光的空间尺度大于电子惯性尺度时,电子会由于非相干尾波场而被非热加速。分布函数通常由幂律谱表示,其指数〜2与激光强度和等离子体密度无关。

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