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Scheme for multistep resonance photoionization of atoms - art. no. 013401

机译:原子的多步共振光电离方案-艺术。没有。 013401

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摘要

Traditional schemes for multistep resonance photoionization of atoms let every employed laser beam interact with the atoms simultaneously. In such a situation, analyses via time-dependent Schrodinger equation show that high ionization probability requires all the laser beams must be intense enough. In order to decrease laser intensity, we proposed a scheme that the laser beam used to pump the excited atoms (in a higher bound state) into an autoionization state does not interact with the atoms until all the population is transferred by the other lasers from a ground state to the bound state. As an interesting example, we examined three-step photoionization of U-235 With our scheme, showing that the intensity of two laser beams can be lowered by two orders of magnitude Without losing high ionization probability. [References: 12]
机译:原子的多步共振光电离的传统方案是使每个使用的激光束同时与原子相互作用。在这种情况下,通过与时间有关的薛定inger方程的分析表明,高电离概率要求所有激光束必须足够强。为了降低激光强度,我们提出了一种方案,用于将激发原子(处于较高束缚态)泵浦成自电离态的激光束不会与原子发生相互作用,直到所有粒子都被其他激光从原子中转移出来为止。从基态到绑定状态。作为一个有趣的示例,我们使用我们的方案检查了U-235的三步光电离,结果表明,在不损失高电离概率的情况下,两个激光束的强度可以降低两个数量级。 [参考:12]

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