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Dynamics of an electron in a relativistically intense laser field including radiaion reaction

机译:电子在相对论强度的激光场中的动力学,包括辐射反应

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摘要

The dynamics of an electron in a relativistically intense laser pulse field is described with the radiation reaction being taken into account. The study is based on solving the Newton equation with the Lorentz and the radiation reaction forces. Validation is provided for an iteration technique which makes it possible to remove the discrepancies found in the theoretical models of radiation reaction. It is demonstrated that an electron having a high initial velocity and colliding head-on with a laser pulse sheds a considerable part of its kinetic energy due to the radiation reaction. A broadening of the electromagnetic pulse emitted by the electron occurs as a result of the same effect. The findings obtained can be used to experimentally verify the effect of radiation reaction.
机译:描述了相对论性强激光脉冲场中电子的动力学,并考虑了辐射反应。该研究基于用洛伦兹和辐射反作用力求解牛顿方程。为迭代技术提供了验证,该技术可以消除辐射反应理论模型中发现的差异。已经证明,具有高的初始速度并且与激光脉冲正面碰撞的电子由于辐射反应而损失了很大一部分动能。由于相同的作用,由电子发射的电磁脉冲变宽。获得的发现可用于实验验证辐射反应的效果。

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