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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Internal dielectronic excitation in highly charged ions colliding with surfaces - art. no. 042903
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Internal dielectronic excitation in highly charged ions colliding with surfaces - art. no. 042903

机译:高电荷离子与表面碰撞时的内部双电子激发-艺术。没有。 042903

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摘要

Internal dielectronic excitation (IDE) is a correlated atomic physics process that takes place when the deexcitation of a Rydberg electron is accompanied by the excitation of a more tightly bound electron, resulting in a doubly excited inner-shell configuration. Subsequent x-ray emission involving an electron transition to a shell that initially contained no vacancies identifies the IDE process. IDE is mediated by the electron-electron interaction in a manner similar to a time-reversed Auger transition, and can occur during the neutralization of a slow highly charged ion interacting with a solid where there are many Rydberg levels that can give rise to correlated transitions to degenerate energy states. We have investigated IDE for a wide range of projectiles and solid targets by measuring the resulting x-ray emission. The characteristic features of the x-ray spectra suggest that IDE occurs above the surface of the solid. [References: 22]
机译:内部双电子激发(IDE)是一种相关的原子物理学过程,当里德堡电子的去激发伴随着束缚更紧密的电子的激发发生时,会产生双重激发的内壳结构。随后的x射线发射包括电子跃迁到最初不包含任何空位的壳的过程,这些过程确定了IDE过程。 IDE由电子-电子相互作用介导,其方式类似于时间反转的俄歇跃迁,并且可以发生在中和慢速高电荷离子与固体相互作用的过程中,在该固体中,许多里德堡能级会引起相关跃迁使能量状态退化。我们已经通过测量产生的X射线发射对IDE进行了广泛的弹丸和固体目标研究。 X射线光谱的特征表明IDE发生在固体表面上方。 [参考:22]

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