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Radiative reaction in ultra-intense laser-atom interaction

机译:超强激光-原子相互作用中的辐射反应

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The influence of the radiation of an initially bound electron in an ultra-intense laser held on its dynamics and the consequent corrections to its spectral response are investigated within the relativistic classical Lorentz-Dirac approach. We find appreciable damping of the electron motion in the direction of polarization of the laser field, and a consequent reduction of the electron oscillation frequency. This yields a further boost in the electron velocity in the direction of propagation of the laser pulse, which can also be understood as due to the reabsorption of emitted radiation mainly with momentum in the direction of electron motion. The increase in the redshift of the electron motion is visible in the spectral response detected perpendicular to the laser propagation direction. [References: 28]
机译:在相对论的经典洛伦兹-狄拉克方法中研究了超强激光中最初结合的电子的辐射对其动力学的影响及其对光谱响应的修正。我们发现在激光场的极化方向上电子运动有明显的阻尼,从而降低了电子振荡频率。这在沿激光脉冲的传播方向上进一步提高了电子速度,这也可以理解为,由于主要在电子运动方向上具有动量的发射辐射的重吸收。在垂直于激光传播方向检测到的光谱响应中,可以看到电子运动的红移增加。 [参考:28]

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