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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Improved treatment of the turning point in tunnel ionization of atoms in a low-frequency electromagnetic field
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Improved treatment of the turning point in tunnel ionization of atoms in a low-frequency electromagnetic field

机译:在低频电磁场中原子隧道电离中转折点的改进处理

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In constructing the ADK theory, the Coulomb interaction was not included as the first-order correction into the all phases, i.e., the turning point was calculated to the zero-order degree of approximation with regard to the Coulomb interaction. This was correct for fields (up to 10(12) W/cm(2)) much smaller than the atomic field (10(16) W/cm2). But as lately in experiments are used fields even greater than the atomic one (in this case ADK theory does not work), we decided to reconsider the influence of the Coulomb interaction on the turning point for the fields that are strong enough to make a difference and yet are smaller than the atomic fields (i.e., for fields of order of magnitude of 10(14) W/cm2). So, in this paper we have included the Coulomb interaction where it has been completely neglected earlier. We have shown that this more accurate approach gives somewhat different result for the ionization probability. [References: 19]
机译:在构建ADK理论时,不将库仑相互作用作为所有相的一阶校正,即,将转折点计算为相对于库仑相互作用的零级近似度。这对于远小于原子场(10(16)W / cm2)的场(高达10(12)W / cm(2))是正确的。但是由于最近在实验中使用的场甚至比原子场大(在这种情况下,ADK理论不起作用),我们决定重新考虑库仑相互作用对拐点的影响,这些场足够强以产生变化并且小于原子场(即,对于数量级为10(14)W / cm2的场)。因此,在本文中,我们将库仑相互作用包括在内,而在此之前它已被完全忽略。我们已经表明,这种更准确的方法对于电离概率给出的结果有些不同。 [参考:19]

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