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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Relativistic free-electron dynamics and light-emission spectra in the simultaneous presence of a superintense laser field and a strong uniform magnetic field
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Relativistic free-electron dynamics and light-emission spectra in the simultaneous presence of a superintense laser field and a strong uniform magnetic field

机译:同时存在超强激光场和强均匀磁场的相对论自由电子动力学和发光光谱

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We present exact analytic trajectories for a relativistic electron in the presence of an elliptically polarized superintense laser field and a strong uniform magnetic field. Also derived are expressions for the velocity components of the electron and for its energy as functions of the phase of the laser field as a parameter. The analytic trajectory solutions are illustrated by numerical calculations employing laser-field parameters and magnetic-field strengths currently available for laboratory experiments. The trajectory solutions are useful for (among other things) the study of the related problem of emission of radiation in the combined laser and magnetic fields. An exact expression for the cross section of light scattered by an electron initially moving along the laser propagation direction and in a magnetic field is given. It is found that, for observation along the common direction of laser propagation and the magnetic field, light at two frequencies omega=omega(0) and Omega(0) is scattered, where Omega(0) = gamma(0) (1 + beta(0)) omega(c), omega(c) is the cyclotron frequency of the electron motion in the magnetic field, beta(0) is the initial speed of the electron normalized by the speed of light, gamma(0) = (1 - beta(0)(2))(-) (1/2), and omega(0) is the laser frequency. Using the analytic solutions, we also study numerically the spectrum of radiation emitted along observation directions parallel to the electric and parallel to the magnetic components of the laser field. In each case, we present and discuss the dependence of the spectra on (a) the increase of the electron initial velocity, (b) the intensity and the frequency of the laser, and (c) the strength of the magnetic field. [S1050-2947(98)09409-8]. [References: 15]
机译:在椭圆偏振超强激光场和强均匀磁场的存在下,我们给出了相对论电子的精确解析轨迹。还导出了作为电子场的相位的函数的电子的速度分量及其能量的表达式。通过使用当前可用于实验室实验的激光场参数和磁场强度的数值计算来说明解析轨迹解。轨迹解可用于(除其他事项外)研究激光和磁场组合中的辐射发射的相关问题。给出了由最初沿激光传播方向移动并在磁场中移动的电子散射的光的横截面的精确表达式。发现,为了沿着激光传播和磁场的共同方向进行观察,散射了两个频率omega = omega(0)和Omega(0)的光,其中Omega(0)= gamma(0)(1 + beta(0))omega(c),omega(c)是磁场中电子运动的回旋频率,beta(0)是通过光速归一化的电子的初始速度,gamma(0)= (1- beta(0)(2))(-)(1/2),omega(0)是激光频率。使用解析解,我们还对沿平行于激光场的电分量和磁分量的观察方向发射的辐射光谱进行了数值研究。在每种情况下,我们介绍并讨论光谱对以下方面的依赖性:(a)电子初始速度的增加;(b)激光的强度和频率;以及(c)磁场的强度。 [S1050-2947(98)09409-8]。 [参考:15]

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