论文标题

能量恢复直果科的发展

The Development of Energy-Recovery Linacs

论文作者

Adolphsen, Chris, Andre, Kevin, Angal-Kalinin, Deepa, Arnold, Michaela, Aulenbacher, Kurt, Benson, Steve, Bernauer, Jan, Bogacz, Alex, Boonekamp, Maarten, Brinkmann, Reinhard, Bruker, Max, Brüning, Oliver, Curatolo, Camilla, Duthill, Patxi, Fischer, Oliver, Hoffstaetter, Georg, Holzer, Bernhard, Hounsell, Ben, Hutton, Andrew, Jensen, Erk, Kaabi, Walid, Kayran, Dmitry, Klein, Max, Knobloch, Jens, Krafft, Geoff, Kühn, Julius, Kuske, Bettina, Litvinenko, Vladimir, Marhauser, Frank, Militsyn, Boris, Nagaitsev, Sergei, Neil, George, Neumann, Axel, Pietralla, Norbert, Rimmer, Bob, Serafini, Luca, Shevchenko, Oleg A., Shipman, Nick, Spiesberger, Hubert, Tanaka, Olga, Telnov, Valery, Tennant, Chris, Vaccarezza, Cristina, Verney, David, Vinokurov, Nikolay, Williams, Peter, Yamamoto, Akira, Yokoya, Kaoru, Zimmermann, Frank

论文摘要

欧洲粒子物理策略(2020)更新是欧洲粒子物理策略,这是未来高能物理学的加速器基础的最有前途的技术之一,已强调了Linacs(ERLS)。当前的论文已作为基本文件编写,以支持和指定最近发表的欧洲路线图的细节,以开发LINACS的能源回归。本文总结了先前关于ERL的成就以及该领域的状态及其基本技术项目。提出了ERL对粒子和核物理以及工业发展的主要未来贡献和应用。本文包括2030年以后的进一步未来的愿景,以及主要现有和即将到来的ERL设施的比较数据库。一系列连续的创新,例如强烈的电子源或高质量的超导腔技术,将大大促进加速器物理学的发展。工业应用具有潜在的革命性,可能会进一步发展ERL的发展,并建立了粒子物理对社会及其技术基础的影响的另一个光辉的例子,并具有对维持性质的特殊看法。

Energy-recovery linacs (ERLs) have been emphasised by the recent (2020) update of the European Strategy for Particle Physics as one of the most promising technologies for the accelerator base of future high-energy physics. The current paper has been written as a base document to support and specify details of the recently published European roadmap for the development of energy-recovery linacs. The paper summarises the previous achievements on ERLs and the status of the field and its basic technology items. The main possible future contributions and applications of ERLs to particle and nuclear physics as well as industrial developments are presented. The paper includes a vision for the further future, beyond 2030, as well as a comparative data base for the main existing and forthcoming ERL facilities. A series of continuous innovations, such as on intense electron sources or high-quality superconducting cavity technology, will massively contribute to the development of accelerator physics at large. Industrial applications are potentially revolutionary and may carry the development of ERLs much further, establishing another shining example of the impact of particle physics on society and its technical foundation with a special view on sustaining nature.

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