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Barkas effect in the stopping power for ions with different ionization degrees

机译:Barkas效应对不同电离度的离子的阻止能力

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摘要

The Barkas effect in the electronic stopping power for dressed projectiles moving in a free electron gas is studied for a wide range of velocities v. The interaction of the projectile with the target is described using screened interaction potentials, which take into account the self screening due to the projectile bound electrons and the external screening produced by the target electron gas. The Barkas factor is obtained from a classical simulation of the scattering of the target electrons in the potential of the projectile and that of its antiparticle, following the transport cross section model. A large set of numerical simulations were made for different projectiles, degrees of ionization and velocities. We find that the Barkas factor increases at high energies with the number of projectile bound electrons, whereas its velocity dependence changes from the v~(-3) behavior for bare projectiles to a v~(-2) behavior for neutral ones. Interesting effects of curve crossings in the Barkas factor at different degrees of ionization as a function of the projectile velocity are observed. A simple scaling law for neutral and fully ionized projectiles is also derived.
机译:在广泛的速度v下研究了穿衣弹丸在自由电子气体中移动的电子制动力中的巴尔卡斯效应v。使用筛选的相互作用势描述了弹丸与目标的相互作用,并考虑了自筛选射弹结合的电子和目标电子气产生的外部屏蔽。 Barkas因子是根据运输截面模型,通过经典模拟的目标电子在弹丸及其反粒子的电势中的散射而获得的。针对不同的弹丸,电离度和速度进行了大量的数值模拟。我们发现,在高能状态下,Barkas因子随束缚电子的数量而增加,而其速度依赖性从裸露的弹丸的v〜(-3)行为变为中性弹丸的v〜(-2)行为。观察到在不同电离度下,随着射弹速度的变化,Barkas因子中曲线交叉的有趣影响。还推导出了中性和完全离子化弹丸的简单比例定律。

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