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Validity of the paraxial approximation for electron acceleration with radially polarized laser beams

机译:径向偏振激光束对电子加速的近轴近似的有效性

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In the study of laser-driven electron acceleration, it has become customary to work within the framework of paraxial wave optics. Using an exact solution to the Helmholtz equation as well as its paraxial counterpart, we perform numerical simulations of electron acceleration with a high-power TM_(01) beam. For beam waist sizes at which the paraxial approximation was previously recognized valid, we highlight significant differences in the angular divergence and energy distribution of the electron bunches produced by the exact and the paraxial solutions. Our results demonstrate that extra care has to be taken when working under the paraxial approximation in the context of electron acceleration with radially polarized laser beams.
机译:在激光驱动电子加速的研究中,在近轴波光学框架内工作已成为习惯。使用Helmholtz方程及其近轴副方程的精确解,我们对高功率TM_(01)束进行电子加速的数值模拟。对于先前认为近轴近似有效的束腰尺寸,我们强调了精确解和近轴解产生的电子束的角度发散和能量分布的显着差异。我们的结果表明,在径向偏振激光束加速电子的情况下,在近轴近似下工作时必须格外小心。

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