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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Propagation effect in atom excitation by ultrashort and intense laser pulses
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Propagation effect in atom excitation by ultrashort and intense laser pulses

机译:超短和强激光脉冲在原子激发中的传播效应

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We study hydrogenlike target excitation by a traveling electromagnetic pulse. The spatial size of the pulse l=ctau (c is the speed of light and tau is the pulse duration) is assumed to be comparable or less than the characteristic size of the initially occupied atomic state. When propagating through the atom, the pulse is shown to transform the electron wave function "slice by slice." These transformations lead to electron transitions between states with Deltam=+/-1 which are forbidden in the dipole approximation. The case of linear polarization is considered. It is found that magnetic-level excitation probabilities are small for the hydrogen atom, but can be more significant for the hydrogenlike multicharged ions.
机译:我们通过行进的电磁脉冲研究类氢目标激发。假设脉冲的空间大小l = ctau(c是光速,tau是脉冲持续时间)可比或小于最初占据的原子态的特征大小。当通过原子传播时,脉冲显示为“逐片”转换电子波函数。这些转换导致在偶极子近似中禁止的,具有Deltam = + /-1的状态之间的电子跃迁。考虑线性极化的情况。已经发现,氢原子的磁能级激发概率较小,而氢原子状的多电荷离子的磁能激发概率可能更大。

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