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An Approach for Considering Ionization in Light Atoms by Relativistic Projectiles Generating Strong Electromagnetic Fields

机译:考虑相对论的射弹产生强光的轻原子电离的一种方法 电磁场

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摘要

We propose an approach to treat ionization of light atoms in relativistic collisions with highly charged ions, where the electromagnetic field generated by the ions can be very strong. The approach is based on the observation that, for a collision with a certain momentum transfer, either the relativistic effects, connected with the collision velocity approaching the speed of light, or the higher-order terms in the corresponding Born series in the projectile–target interaction can be of importance for the ionization process. The approach consists of dividing all collisions into those with 'small' and 'large' momentum transfers, which are described by (the first order of) the relativistic Born and the Glauber approximations, respectively. The approach is applied to describe helium single ionization by 1 GeV u-1 U92+ projectiles.
机译:我们提出了一种方法,用于在与高电荷离子的相对论碰撞中处理轻原子的电离,其中离子产生的电磁场可能非常强。该方法基于以下观察结果:对于具有一定动量传递的碰撞,要么是相对论效应,即与接近光速的碰撞速度有关,要么是射弹-目标中相应的“玻恩”级数的高阶项相互作用对于电离过程可能很重要。该方法包括将所有碰撞分为动量传递“小”和“大”的碰撞,分别由相对论的伯恩近似和格劳伯近似描述(一阶)。该方法用于描述1 GeV u-1 U92 +弹丸的氦单电离。

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