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Electronic energy loss and effective charge of heavy ions in different targets

机译:电子能量损失和不同靶标中重离子的有效电荷

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The process of stopping conveniently described in two steps. The first step is the dynamic screening of the impact-ing projectile by the electron gas of the target which results in the concept of effective charge. The second is the inter-action between the screened projectile and the target atoms. A model of an impacting heavy ion embedded in a jellium is used to calculate the static charge state and the effective charge of the heavy ion at the zero velocity limit based on the self-consistent density-functional theory. This effective charge of the heavy ion at low velocities is extrapolated to a higher velocity by means of the BK formula. The quantal harmonic oscillator model which takes the structures of target atoms into acocunts is generalized to calculate the electronic energy loss of heavy ions of heavy ions colliding with three kinds of targets. The results are copared with the available experimental data.
机译:停止方便地分两步描述的过程。 第一步是通过目标的电子气体的冲击射弹动态筛选,这导致有效充电的概念。 第二是筛选的射弹和目标原子之间的互动。 嵌入在鸡皮中的撞击重离子的模型用于根据自一致密度功能理论计算静态电荷状态和零速度极限处的重离子的有效电荷。 通过BK公式将其在低速下的重离子的这种有效电荷推断为更高的速度。 将目标原子的结构进入acocunts的量级谐波振荡器模型是推广的,以计算与三种靶的重离子的重离子的电子能量损失。 结果是用可用的实验数据进行复制。

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