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Research on the secondary electron yield of TiZrV-Pd thin film coatings

机译:TiZrV-Pd薄膜涂层的二次电子产率研究

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摘要

In particle accelerators, the build-up of electron cloud has an important influence on beam quality. Especially for the positron and proton accelerators, massive electrons lead to electron cloud, which affects the stability, energy, emittance and beam life adversely. A secondary electron emission (SEE) measurement system has been designed and used to study the SEE of palladium (Pd), TiZrV and TiZrV-Pd with an independently adjustable energy from 50 eV to 5 keV. Here, we obtained the characteristics of the SEE from Pd, TiZrV and TiZrV-Pd film coatings with different thickness under ultrahigh-vacuum (UHV) conditions. Moreover, the minimum maximum secondary electron yield (SEY), delta(max), of the Pd, TiZrV and TiZrV-Pd film coatings under different primary electron doses were 138, 1.51, and 1.52, respectively. Finally, the variation of the secondary electron yield with the incident electron energy will be discussed for Pd, TiZrV and TiZrV-Pd thin film coatings. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在粒子加速器中,电子云的堆积对电子束质量有重要影响。特别是对于正电子和质子加速器,大量电子会导致电子云,这会对稳定性,能量,发射率和电子束寿命产生不利影响。设计了二次电子发射(SEE)测量系统,用于研究钯(Pd),TiZrV和TiZrV-Pd的SEE,其独立可调能量为50 eV至5 keV。在这里,我们从超高真空(UHV)条件下不同厚度的Pd,TiZrV和TiZrV-Pd薄膜涂层中获得了SEE的特性。此外,在不同的一次电子剂量下,Pd,TiZrV和TiZrV-Pd薄膜涂层的最小最大二次电子产率(SEY),Δ(max)分别为138、1.51和1.52。最后,将讨论Pd,TiZrV和TiZrV-Pd薄膜涂层的二次电子产率随入射电子能量的变化。 (C)2016 Elsevier Ltd.保留所有权利。

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