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The general RF tuning for IH-DTL linear accelerators

机译:IH-DTL线性加速器的常规RF调谐

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摘要

The RF tuning is the most important research for achieving the resonant frequency and the flatness of electric field distributions along the axis of RF accelerating structures. The six different tuning concepts and that impacts on the longitudinal field distributions have been discussed in detail combining the RF tuning process of a 1:2 modeled 20.85 MV compact IH-DTL cavity, which was designed to accelerate proton, helium, oxygen or C~(4+) from 400 keV/u to 7 MeV/u and used as the linear injector of 430 MeV/u synchrotron [Y.R. Lu, S. Minaev, U. Ratzinger, B. Schlitt, R.Tiede, The Compact 20MV IH-DTL for the Heidelberg Therapy Facility, in: Proceedings of the LINAC Conference, Luebeck, Germany, 2004 [1]; Y.R. Lu, Frankfurt University Dissertation, 2005. [2]] in Heidelberg Heavy Ion Cancer Therapy (HICAT). Some of tuning concepts are also suitable and effective for the tuning of RFQ and/or other RF accelerating structures. Finally good field flatness in IH-DTL cavity has been realized successfully. The experience got from the model cavity tuning benefits real power cavity tuning, which is only needed to be tuned by the plungers. The cavity had a beam commissioning successfully for the initial beam acceleration at the end of 2006.
机译:射频调谐是实现共振频率和沿射频加速结构轴的电场分布平坦度最重要的研究。结合了1:2建模的20.85 MV紧凑型IH-DTL腔的RF调谐过程,详细讨论了六个不同的调谐概念及其对纵向场分布的影响,该RF调谐过程旨在加速质子,氦,氧或C〜 (4+)从400 keV / u到7 MeV / u,并用作430 MeV / u同步加速器的线性注入器[YR Lu,S。Minaev,U。Ratzinger,B。Schlitt,R。Tiede,《用于海德堡疗法设施的紧凑型20MV IH-DTL》,载于:LINAC会议论文集,德国吕贝克,2004 [1]; Y.R.卢,法兰克福大学论文,2005。[2]在海德堡重离子癌症治疗(HICAT)中。一些调谐概念对于RFQ和/或其他RF加速结构的调谐也是合适和有效的。最终成功实现了IH-DTL腔的良好场平。从模型腔调整中获得的经验有益于实际功率腔调整,这仅需要由柱塞进行调整。该腔在2006年底成功进行了光束调试,以进行初始光束加速。

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