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强交叉激光束中的相对论电子动力学:加速与康普顿谐波

Relativistic electron dynamics in intense crossed laser beams: acceleration and Compton harmonics.

作者信息

Salamin Yousef I, Mocken Guido R, Keitel Christoph H

机构信息

Theoretische Quantendynamik, Fakultät für Physik, Universität Freiburg, Hermann-Herder-Strasse 3, D-79104 Freiburg, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Jan;67(1 Pt 2):016501. doi: 10.1103/PhysRevE.67.016501. Epub 2003 Jan 8.

Abstract

Electron motion and harmonic generation are investigated in the crossed-beam laser-accelerator scheme in a vacuum. Exact solutions of the equations of motion of the electron in plane-wave fields are given, subject to a restricted set of initial conditions. The trajectory solutions corresponding to axial injection are used to calculate precise emission spectra. Guided by hindsight from the analytic investigations, numerical calculations are then performed employing a Gaussian-beam representation of the fields in which terms of order epsilon(5), where epsilon is the diffraction angle, are retained. Present-day laser powers and initial conditions on the electron motion that simulate realistic laboratory conditions are used in the calculations. The analytic plane-wave work shows, and the numerical investigations confirm, that an optimal crossing angle exists, i.e., one that renders the electron energy gain a maximum for a particular set of parameters. Furthermore, the restriction to small crossing angles is not made anywhere. It is also shown that energy gains of a few GeV and energy gradients of several TeV/m may be obtained using petawatt power laser beams.

摘要

在真空中的交叉束激光加速器方案中研究了电子运动和谐波产生。给出了平面波场中电子运动方程在一组受限初始条件下的精确解。对应于轴向注入的轨迹解用于计算精确的发射光谱。在解析研究的后见之明的指导下,然后采用场的高斯束表示进行数值计算,其中保留了衍射角ε的ε(5)阶项。计算中使用了模拟实际实验室条件的当今激光功率和电子运动的初始条件。解析平面波研究表明,数值研究也证实,存在一个最佳交叉角,即对于特定参数集能使电子能量增益最大的交叉角。此外,在任何地方都没有对小交叉角进行限制。还表明,使用拍瓦功率的激光束可以获得几GeV的能量增益和几TeV/m的能量梯度。

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