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Beam dynamics pre-study for the RFQ of SPPC p-Linac

机译:SPPC P-LINAC的RFQ预研究梁动力学

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摘要

A proton-proton collider at center-of-mass energy of more than 70 TeV is the second stage of the CEPC-SPPC program. As proposed, the SPPC injector chain will use a 1.2 GeV p-Linac and three synchrotrons of 10 GeV p-RCS, 180 GeV MSS and 2.1 TeV SS. Peking University is responsible for the preliminary conceptual design of the room temperature part of SPPC p-Linac. This paper is focusing on the beam dynamics studies performed with respect to the 325 MHz RFQ. As the first accelerator structure after the ion source and the front-end of the whole SPPC, RFQ plays an important role in the beam initial transverse focusing and longitudinal bunching. Based on the New Four Section Procedure strategy, as well as the matched and Equipartitioning design method, a 3 MeV RFQ designed by Parmteq code will be introduced. The cavity length of RFQ is 3.6 m and the transmission efficiency is 98%. In this design scheme, the 40 mA proton beam from the 50 keV ion source is accelerated to 3 MeV in 3.8 m length, which achieves a sixty times energy gain. The results of the analyses show that the RFQ design is reliable and meets all the SPPC p-Linac requirements well.
机译:质量质子撞机在70多个TEV的质量能量下是CEPC-SPPC程序的第二阶段。如提议,SPPC注射器链将使用1.2 GEV P-LINAC和10个GEV P-RCS,180 GEV MSS和2.1 TEV SS的三个同步调节。北京大学负责SPPC P-LINAC室温部分的初步概念设计。本文专注于相对于325MHz RFQ进行的梁动力学研究。作为第一加速器结构之后的离子源和整个SPPC的前端,RFQ在光束初始横向聚焦和纵向束中起着重要作用。基于新的四节手术策略,以及匹配和常规设计方法,将介绍由Parmteq代码设计的3 Mev RFQ。 RFQ的空腔长度为3.6米,传输效率为98%。在该设计方案中,来自50keV离子源的40 mA质子束加速至3.8米长的3meV,这实现了六十次能量增益。分析结果表明,RFQ设计可靠,满足所有SPPC P-LINAC要求。

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