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Study and test of the rebuncher for SARAF-LINAC phase II
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment ( IF 1.5 ) Pub Date : 2020-10-10 , DOI: 10.1016/j.nima.2020.164716
Lu Zhao , XiaoWen Zhu , Jonathan Dumas , Didier Chirpaz , Tom Joannem , Francis Gohier , Nicolas Solenne , Patrice Guiho , Remy Braud , Olivier Piquet , Guillaume Ferrand , Sébastien Ladegaillerie , Claude Marchand , Francoise Gougnaud , Romuald Duperrier , Didier Uriot , Leo Weissman , Boaz Kaizer , Eli Farber , Matthieu Michel , Jean-Francois Leyge

In order to match the beam exiting the RFQ to the superconducting cavities and to minimize the longitudinal beam extension, three rebunchers will be installed in the Medium Energy Beam Transport (MEBT) of SARAF-LINAC phase II. CEA is in charge of the design and fabrication of the copper-plated stainless steel, 3-gap rebunchers. Beam dynamic simulation leads to the global MEBT design. The rebuncher was successfully conditioned to the RF power of 4.4 kW required for CW operation, with sufficient power margin. A solid state power amplifier of 10 kW developed by SNRC is used during the RF test. The rebuncher shows a good performance in terms of the dissipated power, peak temperatures and vacuum level.



中文翻译:

SARAF-LINAC第二阶段重装机的研究和测试

为了使离开RFQ的光束与超导腔相匹配并使纵向光束扩展最小,将在SARAF-LINAC第二阶段的中能光束传输(MEBT)中安装三个重聚束器。CEA负责设计和制造镀铜不锈钢,3间隙重装枪。光束动态仿真导致了全球MEBT设计。重新打包机已成功适应CW操作所需的4.4 kW射频功率,并具有足够的功率裕度。在RF测试期间,使用了SNRC开发的10 kW固态功率放大器。重装机在耗散功率,峰值温度和真空度方面显示出良好的性能。

更新日期:2020-10-29
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