能量回收直线加速器的研制
加速器物理
2022-09-28 v2
摘要
在近期(2020年)更新的欧洲粒子物理战略中,能量回收直线加速器(ERL)被强调为未来高能物理加速器基础中最具前景的技术之一。本文作为基础文件撰写,用以支持和明确最近发布的欧洲能量回收直线加速器发展路线图的细节。本文总结了ERL以往的成就、该领域的现状及其基本技术项目。介绍了ERL对未来粒子物理与核物理以及工业发展的主要可能贡献与应用。本文包含对2030年以后更远未来的愿景,以及主要现有与在建ERL设施的对比数据库。一系列持续的创新,如强流电子源或高质量超导腔技术,将极大推动大范围加速器物理的发展。工业应用具有潜在的革命性,并可能将ERL的发展推向更远,从而树立粒子物理对社会及其技术基础影响的又一光辉典范,并特别关注对自然的保护。
引用
@article{arxiv.2207.02095,
title = {The Development of Energy-Recovery Linacs},
author = {Chris Adolphsen and Kevin Andre and Deepa Angal-Kalinin and Michaela Arnold and Kurt Aulenbacher and Steve Benson and Jan Bernauer and Alex Bogacz and Maarten Boonekamp and Reinhard Brinkmann and Max Bruker and Oliver Brüning and Camilla Curatolo and Patxi Duthill and Oliver Fischer and Georg Hoffstaetter and Bernhard Holzer and Ben Hounsell and Andrew Hutton and Erk Jensen and Walid Kaabi and Dmitry Kayran and Max Klein and Jens Knobloch and Geoff Krafft and Julius Kühn and Bettina Kuske and Vladimir Litvinenko and Frank Marhauser and Boris Militsyn and Sergei Nagaitsev and George Neil and Axel Neumann and Norbert Pietralla and Bob Rimmer and Luca Serafini and Oleg A. Shevchenko and Nick Shipman and Hubert Spiesberger and Olga Tanaka and Valery Telnov and Chris Tennant and Cristina Vaccarezza and David Verney and Nikolay Vinokurov and Peter Williams and Akira Yamamoto and Kaoru Yokoya and Frank Zimmermann},
journal= {arXiv preprint arXiv:2207.02095},
year = {2022}
}