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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Spatial radiation features of circularly polarized tightly focused laser beams colliding with electrons
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Spatial radiation features of circularly polarized tightly focused laser beams colliding with electrons

机译:空间圆偏振的辐射特性紧聚焦激光束碰撞电子

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摘要

In the framework of laser-matter interaction and nonlinear Thomson scattering, we investigate the three-dimensional (3D) motion trajectories and spatial radiation characteristics of the colliding motion electrons with tightly focused circularly polarized Gaussian pulses at different intensities. Combined with the 3D spatial images and the analysis of specific two-dimensional unfolded images, we discover that the amplitude of the motion trajectory increases steadily with increasing laser intensity, the peak radiation power increases rapidly, and the peak radiation azimuth decreases slowly. In addition, by studying the electron motion under the high-intensity (a(0) > 10) laser field, we find that the electron motion is retrograde twice when interacting with pulsed laser once. Lastly, by extracting the direction and energy of spatial radiation, we indicate that the existence of a specific laser intensity can make the peak radiation azimuth theta(m) = 90 degrees and which intienity provides the maximum conversion rate of laser energy to the peak power of radiation.
机译:雷射—交互的框架非线性汤姆逊散射,我们调查三维(3 d)运动轨迹和空间辐射的特点与紧密集中碰撞运动的电子圆偏振高斯脉冲在不同强度。和特定的二维分析展开的图片,我们发现振幅的运动轨迹稳步增加增加激光强度、峰值辐射功率迅速增加,辐射峰值方位慢慢减少。研究下的电子运动高强度((0)> 10)激光领域,我们发现电子的运动是逆行时的两倍脉冲激光相互作用一次。提取空间的方向和能量辐射,我们表明的存在特定的激光强度可以使峰值辐射方位角θ(m) = 90度intienity提供的最大转化率激光能量辐射的峰值功率。

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