论文标题

jlab的NB3SN多电池腔涂料系统

Nb3Sn multicell cavity coating system at JLAB

论文作者

Eremeev, G., Clemens, W., Macha, K., Reece, C. E., Valente-Feliciano, A. M., Williams, S., Pudasaini, U., Kelley, M.

论文摘要

SRF Niobium腔是科学应用的现代加速器的基础。较低的表面阻力,较高的场和高工作温度可以提高未来加速器的科学发现以及潜在的具有成本效益的工业解决方案的范围。我们描述了nb $ _ {3} $ sn涂层系统的设计和性能,该系统将niobium腔的内表面转换为nb $ _ {3} $ sn膜。在热周期中,尼伯表面通过niobium反驳的辐射加热,暴露于sn和sncl $ _ {2} $蒸气,这会导致大约2 $ $ $ m nb $ _ {3} $ sn薄膜。呈现膜组成和结构以及带有1细胞R \&D腔和5细胞实用加速器腔的RF性能。

SRF niobium cavities are the building blocks of modern accelerators for scientific applications. Lower surface resistance, higher fields, and high operating temperatures advance the reach of the future accelerators for scientific discovery as well as potentially enabling cost-effective industrial solutions. We describe the design and performance of an Nb$_{3}$Sn coating system that converts the inner surface of niobium cavities to Nb$_{3}$Sn film. Niobium surface, heated by radiation from the niobium retort, is exposed to Sn and SnCl$_{2}$ vapor during the heat cycle, which results in about 2 $μ$m Nb$_{3}$Sn film on the niobium surface. Film composition and structure as well as RF properties with 1-cell R\&D cavities and 5-cell practical accelerator cavities are presented.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源