影响单电子非线性汤姆孙散射因素的研究  被引量:18

Parameters that influenee the nonlinear Thomson scattering of single electrons in high-intensity laser fields

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作  者:郑君[1] 盛政明[1] 张杰[1] 魏志义[1] 余玮[2] 

机构地区:[1]中国科学院物理研究所光物理开放实验室,北京100080 [2]中国科学院上海光学精密机械研究所,上海201800

出  处:《物理学报》2005年第3期1018-1035,共18页Acta Physica Sinica

基  金:国家自然科学基金 (批准号 :10 3 3 5 0 2 0 ;10 10 5 0 14; 10 3 90 160 );国家高技术惯性约束聚变基金;中国科学院知识创新工程项目资助的课题 .~~

摘  要:应用电子汤姆孙散射的经典理论 ,通过理论分析和计算机模拟 ,研究了超短超强激光脉冲作用下电子产生的辐射脉冲的性质 .计算表明 ,在这种情况下 ,电子的辐射通常以阿秒脉冲列的形式出现 .讨论了不同激光场参数 (包括激光强度、脉宽、初相位和偏振态 )、不同电子初始状态 (初始速度和位置 )对辐射脉冲的时间和空间特性的影响 .通常在相对论光强条件下 ,激光强度越大 ,电子辐射越强 ,脉宽越窄 ,中心频率越大 ,并且方向性越好 ;电子在线偏振激光中产生的辐射效率 ,比在同样强度下圆偏振激光中产生的效率更高 ;无论入射光是线偏振光 ,还是圆偏振光 ,辐射场呈现较复杂的偏振态 ,并且它与辐射方向有关 .当电子具有一定的初始能量时 ,通常辐射场的振幅随电子初始能量的增大而增大 .不管电子的初始能量以及运动方向如何 ,做相对论运动的电子产生的辐射趋向于出现在靠近电子运动方向的角度区域 .The scattering of ultra-short and ultra-intensic laser pulses by single electrons has been investigated theoretically and numerically by use of the classical theory of Thomson scattering by free electrons. The results indicate that attosecond pulse trains are emitted during the interaction. The temporal and spatial characteristics of the radiation are presented for different laser parameters( including intensity, pulse duration, initial phases and polarizations) and initial states of the electron( including different initial velocities and positions). Usually, with the increase of the incident laser intensity, the radiation becomes more powerful, its central frequency becomes higher, its duration becomes shorter, and its angular distribution becomes smaller. The radiation produced by the electron under a linearly polarized laser has a higher amplitude than under a circularly polarized laser pulse with the same intensity. In both cases, the polarization state of the radiation is very complicated, which depends on the observation direction. In spite of its initial energy and moving direction, the radiation produced by relativistic energetic electrons tends to be predominantly along the moving direction of the electron.

关 键 词:单电子 圆偏振 相对论 初始能量 超短超强激光 激光场 偏振态 脉宽 激光强度 辐射脉冲 

分 类 号:O441[理学—电磁学]

 

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