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Physical design of a single-amplifier-driven proton linac injector for a synchrotron-based proton-therapy system in China

机译:中国基于同步加速器质子治疗系统的单放大器驱动质子直线加速器注射器的物理设计

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This paper describes the physical design of a 7 MeV proton linac injector for a synchrotron-based proton-therapy system, sponsored by the Chinese government under the support of the National Key Research and Development Program. The proton linac injector consists of an electron cyclotron resonance proton source, a low-energy beam transport section, a radio-frequency quadrupole (RFQ) accelerator, and an Alvarez-type drift tube linac (DTL). The peak current of the proton beam at the exit of the DTL accelerator is required to exceed 12 mA, with a normalized emittance of <= 1.2 pi mm mrad (90% particles), a repetition rate of 0.5 Hz, and a beam pulse width of 40-100 mu s. For the beam current whose momentum spread falls within +/- 0.3%, the intensity must exceed 8 mA. The design of the linac injector is optimized in the principle of adopting sophisticated domestic technologies and cost control. Only one tetrode-based RF power amplifier is required after minimizing the total peak-power consumption of the RFQ and DTL accelerator, which is 378 kW. The idea of the RF power lines feeding two cavities with one amplifier is presented. To facilitate the manufacture of permanent-magnet quadrupoles and reduce the cost, the focusing strength at the end of the RFQ accelerator is optimized. Consequently, the focusing strength of all permanent-magnet quadrupoles is the same, and the DTL accelerator can be directly connected to match the RFQ accelerator without a medium-energy beam transport section between them. After construction, the 7 MeV proton linac injector is hoped to be the first homemade linac injector for a synchrotron-based proton-therapy facility in China.
机译:本文描述了由中国政府在国家重点研究与发展计划的支持下赞助的基于同步加速器的质子治疗系统的7 MeV质子直线加速器的物理设计。质子直线加速器由电子回旋共振质子源,低能束传输段,射频四极(RFQ)加速器和Alvarez型漂移管直线加速器(DTL)组成。质子束在DTL加速器出口处的峰值电流必须超过12 mA,归一化发射率<= 1.2 pi mm mrad(90%粒子),重复频率为0.5 Hz,束脉冲宽度40-100亩对于动量分布在+/- 0.3%之内的束电流,强度必须超过8 mA。直线加速器注射器的设计在采用先进的国内技术和成本控制的原则上进行了优化。在最小化RFQ和DTL加速器的总峰值功率消耗378 kW之后,仅需要一个基于四极管的RF功率放大器。提出了用一根放大器向两个空腔馈电的RF电源线的想法。为了促进永磁四极杆的制造并降低成本,对RFQ加速器末端的聚焦强度进行了优化。因此,所有永磁四极杆的聚焦强度是相同的,并且可以直接连接DTL加速器以匹配RFQ加速器,而在它们之间没有中能束传输部分。建成后,有望将7 MeV质子直线加速器用作中国基于同步加速器的质子治疗设施的首个自制直线加速器。

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