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EuPRAXIA@SPARC_LAB: The high-brightness RF photo-injector layout proposal

机译:EuPRAXIA @ SPARC_LAB:高亮度RF光电注入器布局建议

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At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasmabased accelerator will drive a new multi-disciplinary user-facility. The facility, that is currently under study at INFN-LNF Laboratories (Frascati, Italy) in synergy with the EuPRAXIA collaboration, will operate the plasma-based accelerator in the external injection configuration. Since in this configuration the stability and reproducibility of the acceleration process in the plasma stage is strongly influenced by the RF-generated electron beam, the main challenge for the RF injector design is related to generating and handling high quality electron beams. In the last decades of R& D activity, the crucial role of high-brightness RF photo-injectors in the fields of radiation generation and advanced acceleration schemes has been largely established, making them effective candidates to drive plasma-based accelerators as pilots for user facilities. An RF injector consisting in a high-brightness S-band photo-injector followed by an advanced X-band linac has been proposed for the EuPRAXIA@SPARC_LAB project. The electron beam dynamics in the photo-injector has been explored by means of simulations, resulting in high-brightness, ultra-short bunches with up to 3 kA peak current at the entrance of the advanced X-band linac booster. The EuPRAXIA@SPARC_LAB high-brightness photo-injector is described here together with performance optimisation and sensitivity studies aiming to actual check the robustness and reliability of the desired working point.
机译:在EuPRAXIA @ SPARC_LAB,先进的高亮度RF注射器和基于等离子体的加速器的独特结合将推动新的多学科用户设施。该设施目前正在与EuPRAXIA合作,正在INFN-LNF实验室(意大利弗拉斯卡蒂)进行研究,该设施将在外部注射配置中运行基于等离子体的加速器。由于在这种配置下,等离子体阶段加速过程的稳定性和可重复性受到RF产生的电子束的强烈影响,因此RF注射器设计的主要挑战与产生和处理高质量的电子束有关。在过去的几十年的研发活动中,高亮度RF光电注入器在辐射生成和高级加速方案领域中的关键作用已得到广泛确立,使其成为驱动基于等离子体的加速器作为用户设施飞行员的有效候选人。对于EuPRAXIA @ SPARC_LAB项目,已经提出了一种射频注入器,该注入器由高亮度S波段光电注入器和先进的X波段直线加速器组成。通过模拟探索了光注入器中的电子束动力学,从而在先进的X波段直线加速器入口处产生了高达3 kA峰值电流的高亮度,超短束。这里将描述EuPRAXIA @ SPARC_LAB高亮度光电注射器,以及旨在实际检查所需工作点的坚固性和可靠性的性能优化和灵敏度研究。

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