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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Relativistic mask method for electron momentum distributions after ionization of hydrogen-like ions in strong laser fields
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Relativistic mask method for electron momentum distributions after ionization of hydrogen-like ions in strong laser fields

机译:强激光田电离后电离后电子动量分布的相对论掩模方法

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Wavefunction-splitting or mask method, widely used in the non-relativistic calculations of the photoelectron angular distributions, is extended to the relativistic domain within the dipole approximation. Since the closed-form expressions for the relativistic Volkov states are not available within the dipole approximation, we build such states numerically solving a single second-order differential equation. We calculate the photoelectron energy spectra and angular distributions for highly charged ions under different ionization regimes with both the direct and the relativistic mask methods. We show that the relativistic mask method works very well and reproduces the electron energy and angular distributions calculated by the direct method in the energy range where both methods can be used. On the other hand, the relativistic mask method can be applied for longer laser pulses and/or higher photoelectron energies where the direct method may have difficulties.
机译:广泛使用的波形分裂或掩模方法广泛用于光电子角分布的非相对论计算,延伸到偶极近似内的相对论域。 由于对偶极近似的相对论Volkov状态的闭合表达不可用,因此我们在数值求解单个二阶微分方程的情况下构建这样的状态。 我们计算光电子能量谱和用于在不同电离制度下的高电离离子的角度分布,其双直接和相对论的掩模方法。 我们表明相对论掩模方法非常好,并再现通过直接方法在能量范围内计算的电子能量和角分布,其中可以使用两种方法。 另一方面,可以施加相对论的掩模方法对于直接方法可能具有困难的较长激光脉冲和/或更高的光电子能量。

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