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首页> 外文期刊>Physical Review. Accelerators and Beams >Measurements of electron cloud density in the CERN Super Proton Synchrotron with the microwave transmission method
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Measurements of electron cloud density in the CERN Super Proton Synchrotron with the microwave transmission method

机译:微波传输法测量CERN超级质子同步加速器中的电子云密度

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The electron cloud effect can pose severe performance limitations in high-energy particle accelerators as the CERN Super Proton Synchrotron (SPS). Mitigation techniques such as vacuum chamber thin film coatings with low secondary electron yields ($mathrm{SEY}1.3$) aim to reduce or even suppress this effect. The microwave transmission method, developed and first applied in 2003 at the SPS, measures the integrated electron cloud density over a long section of an accelerator. This paper summarizes the theory and measurement principle and describes the new SPS microwave transmission setup used to study the electron cloud mitigation of amorphous carbon coated SPS dipole vacuum chambers. Comparative results of carbon coated and bare stainless steel dipole vacuum chambers are given for the beam with nominal LHC 25 ns bunch-to-bunch spacing in the SPS and the electron cloud density is derived.
机译:电子云效应可能会对CERN超级质子同步加速器(SPS)等高能粒子加速器造成严重的性能限制。诸如低二次电子产率($ mathrm {SEY} <1.3 $)的真空室薄膜涂层之类的缓解技术旨在减少甚至抑制这种影响。微波传输方法于2003年在SPS上首次开发和应用,用于测量加速器长段上的积分电子云密度。本文总结了理论和测量原理,并描述了用于研究无定形碳包覆的SPS偶极真空室的电子云缓和的新型SPS微波传输设置。对于在SPS中标称LHC 25 ns束间间距的束,给出了碳涂层和裸露的不锈钢偶极真空室的比较结果,并得出了电子云密度。

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