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Effect of the Target Density on the Cross Section of Charge Exchange between Fast Ions and Atoms

机译:目标密度对快速离子与原子之间电荷交换截面的影响

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摘要

When fast X~q~+ ions collide with atomic or molecular targets, the total charge exchange cross section decreases with increasing target density. This is because the excitation levels of resulting X~(q-1)~+ ions are suppressed because of ionization by target atoms. The effect of target density on the total charge exchange cross section may amount to one order of magnitude or more depending on the charge and energy of an incident ion, as well as on the density and inner shell configuration of target atoms. Numerical calculations are performed for partial (in the principal quantum number n) cross sections σ_(tot) = Σ_nσ(n) of charge exchange in the case of collisions of fast multiply charged ions having an energy E in the range 100 keV/u-10 MeV/u with gas or solid targets.
机译:当快速的X〜q〜+离子与原子或分子靶碰撞时,总的电荷交换截面随靶密度的增加而减小。这是因为所产生的X〜(q-1)〜+离子的激发能级由于靶原子的电离而受到抑制。根据入射离子的电荷和能量,以及靶原子的密度和内壳构型,靶密度对总电荷交换截面的影响可能达到一个数量级或更大。在能量为100 keV / u-的快速倍增带电离子碰撞的情况下,对电荷交换的部分(在主量子数n中)截面σ_(tot)=Σ_nσ(n)进行数值计算。 10 MeV / u,具有气体或固体靶标。

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