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Magnetic field effects in strong field ionization of single-electron atoms: Three-dimensional numerical simulations

机译:单电子原子强场电离中的磁场效应:三维数值模拟

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Based on realistic numerical simulations of the three-dimensional time-dependent Schrodinger equation describing a hydrogen atom interacting with a strong electromagnetic field, the influence of the magnetic component is studied. The same computational techniques can be applied to the case of strong field photoionization as well as to the case of ionization by an incident relativistic heavy ion. One of the main consequences, in the strong-laser-field case, is the presence of true even harmonics of the incoming field. In the heavy ion impact, the asymmetry of the wave function reveals the importance of the nondipole nature of the interaction. [References: 64]
机译:基于三维时间相关的薛定strong方程的逼真的数值模拟,该方程描述了氢原子与强电磁场的相互作用,研究了磁性成分的影响。相同的计算技术可以应用于强场光电离的情况以及入射相对论重离子的电离情况。在强激光场情况下,主要后果之一是入射场中存在真正的偶次谐波。在重离子碰撞中,波函数的不对称揭示了相互作用的非偶极性质的重要性。 [参考:64]

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