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Electrons in a relativistic-intensity laser field: Generation of zeptosecond electromagnetic pulses and energy spectrum of the accelerated electrons

机译:相对论强度激光场中的电子:十秒电磁脉冲的产生和加速电子的能谱

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摘要

We study the motion of an electron and emission of electromagnetic waves by an electron in the field of a relativistically intense laser pulse. The dynamics of the electron is described by the Newton equation with the Lorentz force in the right-hand side. It is shown that the electrons may be ejected from the interaction region with high energy. The energy spectrum of these electrons and the technique of using the spectrum to assess the maximal intensity in the focus are analysed. It is found that electromagnetic radiation of an electron moving in an intense laser field occurs within a small angle around the direction of the electron trajectory tangent. The tangent quickly changes its direction in space; therefore, electromagnetic radiation of the electron in the far-field zone in a certain direction in the vicinity of the tangent is a short pulse with a duration as short as zeptoseconds. The calculation of the temporary and spectral distribution of the radiation field is carried out.
机译:我们研究相对论性强激光脉冲领域中电子的运动和电子的电磁波发射。电子的动力学由牛顿方程描述,洛伦兹力在右侧。结果表明,电子可以以高能量从相互作用区域中射出。分析了这些电子的能谱以及利用该能谱评估焦点最大强度的技术。发现在强激光场中移动的电子的电磁辐射发生在围绕电子轨迹切线方向的小角度内。切线迅速改变其空间方向。因此,在切线附近的某个方向上远场区域中的电子的电磁辐射是短脉冲,持续时间短于十亿秒。进行辐射场的临时和光谱分布的计算。

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