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4d core hole formation in silver and its role in Ag- secondary ion formation/survival

机译:银中4d核孔的形成及其在Ag二次离子形成/存活中的作用

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The low energy mono-atomic secondary ion intensities of Ag- over the transient regions from Ag under 1-5 keV Cs+ primary ion impact are compared. These energies are used since they appear to be above and below the collisional excitation threshold for 4d core hole formation. The lack of any work function dependence in both suggests that (a) Ag- forms via resonance charge transfer of electrons from the broad 5s-5p band to Ag atoms bearing 4d core holes (Auger is disregarded for energetic reasons), and that (b) the route via which 4d core holes are formed, whether it be via collective oscillations or collisional excitation, is of minimal importance. The similarity in X-ray induced plasmon loss features from clean and Cs implanted Ag confers with these results. (c) 2006 Elsevier B.V. All rights reserved.
机译:比较了在1-5 keV Cs +一次离子冲击下,Ag过渡区域上Ag-的低能单原子二次离子强度。之所以使用这些能量,是因为它们似乎在4d岩心孔形成的碰撞激发阈值之上和之下。两者均不依赖于功函数,这表明(a)通过电子从5s-5p宽能带到带有4d核孔的Ag原子的共振电荷转移形成Ag-(出于能量的原因而忽略了奥格),并且(b )形成4d核心孔的途径(无论是通过集体振荡还是碰撞激发)是至关重要的。清洁和Cs注入的Ag在X射线引起的等离激元损失特征方面的相似性赋予了这些结果。 (c)2006 Elsevier B.V.保留所有权利。

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