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Suppression of projectile-electron excitations in collisions with a free-electron gas of metals - art. no. 052902

机译:与金属自由电子气体碰撞中的弹丸电子激发的抑制-艺术没有。 052902

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摘要

Excitation and ionization of hydrogenic projectiles in collisions with metal free-electron gas are analyzed in the high but nonrelativistic energy regime. Transition matrix elements are calculated in the first Born approximation, and the free-electron gas response is described by using the Mermin-Lindhard dielectric function. Projectile excitation and loss probabilities per unit length are found to be smaller than those corresponding to the collisions with a wave packet of single electrons of equivalent density. This behavior is explained in terms of the collective effect (shielding) of the free-electron gas and depends on the energy transferred to the atomic electron and on the impact velocity. By comparing results obtained using a binary collisional formalism and those using the dielectric formalism, we estimate the plasmon excitation contribution to the total probabilities. [References: 39]
机译:在高但非相对论的能量体系中,对与金属自由电子气体碰撞时氢弹的激发和电离进行了分析。在第一个Born近似中计算过渡矩阵元素,并使用Mermin-Lindhard介电函数描述自由电子气体响应​​。发现每单位长度的弹丸激发和损失概率小于对应于与等效密度的单电子波包碰撞的那些。这种行为是根据自由电子气体的集体效应(屏蔽)来解释的,并且取决于转移到原子电子上的能量和撞击速度。通过比较使用二元碰撞形式学和使用介电形式学获得的结果,我们估计了等离子体激元激发对总概率的贡献。 [参考:39]

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