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Photo-ionization probability of 3+1 resonance enhanced multi-photon process

机译:光电电离概率为3 + 1共振增强的多光子过程

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Analytic expression of the ionization probability about 3+1 resonance enhanced multi-photon ionization (REMPI) process is deduced with the theory of rate equation, which implies the interaction of photon and material. Based on the expressions, the influence of laser intensity, laser pulse duration and spontaneous radiation lifetime on the ionization probability is analyzed theoretically. It is found that the ionization probability increases with laser intensity and laser pulse duration until gets to saturation. After that, the ionization probability will oscillate around the saturation value if laser intensity increases further. The amplitude of oscillation increases with laser intensity at first, and then it will decrease even get to zero after a maximum peak comes out. We attribute the appearance of the oscillation to the phenomena of quantum coherence caused by the splitting of energy level in strong laser field. As to the fact that the ionization probability becomes to zero with the increase of laser intensity, it indicates that laser intensity is strong enough so as to make the neutral particles getting to the region of ionization suppression. It is also found that the variation of ionization probability with spontaneous radiation lifetime is far smaller than the one with ionization rate. So the influence of the spontaneous radiation lifetime on ionization probability could be ignored.
机译:利用速率方程理论推导出电离概率约3 + 1共振增强的多光子电离(REMPI)工艺的分析表达,这意味着光子和材料的相互作用。基于表达式,理论上分析了激光强度,激光脉冲持续时间和自发辐射寿命对电离概率的影响。发现电离概率随着激光强度和激光脉冲持续时间而增加,直到饱和。之后,如果激光强度进一步增加,电离概率会围绕饱和值振荡。首先,振幅随着激光强度而增加,然后在最大峰值出现后,它将减少甚至达到零。我们将振荡的外观归因于强激光场中能量水平分裂引起的量子相干现象。至于随着激光强度的增加,电离概率变为零,它表明激光强度足够强,以使中性粒子进入电离抑制区域。还发现,具有自发辐射寿命的电离概率的变化远比具有电离率的寿命小。因此,可以忽略自发辐射寿命对电离概率的影响。

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