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首页> 外文期刊>Journal of the Korean Physical Society >Beam Dynamics Design of a Radio-Frequency Quadrupole and a Drift Tube Linac for a High-Intensity Proton Injector
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Beam Dynamics Design of a Radio-Frequency Quadrupole and a Drift Tube Linac for a High-Intensity Proton Injector

机译:高强度质子喷射器的射频四极孔和漂移管LINAC的梁动力学设计

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We show the design results of beam dynamics on the injector for high-intensity proton accelerators. The injector can be utilized in a medical proton linac and accelerator driven system. The injector system consists of a 325-MHz RFQ (radio-frequency quadrupole) accelerator and a 325-MHz DTL (drift tube linac) accelerator. The injector has been designed to optimize the beam parameters to meet the required design goals. In this paper, we present a design study on the beam dynamics in the injector through beam tracking. We show the results of the beam dynamics study and cavity design study in the RFQ. The high-intensity RFQ accelerates the proton beam from 50 keV to 3 MeV with a peak beam current of 30 mA. The RFQ has a length of 3.839 m and Kilpatrick value of 1.76. We investigated ways to minimize the emittance growth caused by the space-charge effect and optimized achieve a high transmission and a small growth of emittance along the RFQ. The DTL with face angles of 3 degree and 10 degree in one tank accelerates proton beams from 3 MeV to 10 MeV and is 4.3 m long. Electromagnet quadrupoles (EMQs) are used as focusing elements in a Focusing-Defocusing-Focusing-Defocusing (FFDD) lattice scheme in the DTL. A quadrupole between the RFQ and the DTL, and 8 drift tubes (DT) in DTL are used for transverse matching in the DTL. We investigated the beam dynamics to achieve a high transmission and a small growth of emittance along the DTL. We also show the results of beam tracking simulations in the DTL. Our studies show that major parameters affecting on beam dynamics in the injector for a high-intensity proton linac are available.
机译:我们展示了用于高强度质子加速器的喷射器上的梁动力学的设计结果。喷射器可用于医疗质子LINAC和加速器驱动系统。喷射器系统由325-MHz RFQ(射频四极)加速器和325MHz DTL(漂移管LINAC)加速器组成。喷射器旨在优化光束参数以满足所需的设计目标。在本文中,我们通过光束跟踪展示了喷射器中梁动力学的设计研究。我们展示了RFQ中梁动力学研究和腔设计研究的结果。高强度RFQ将质子束从50kev到3 mev加速,峰束电流为30 mA。 RFQ的长度为3.839米,千杆杆值为1.76。我们调查了最小化空间电荷效应引起的吸收率增长的方法,并且优化达到高传输和沿着RFQ的施加率的小增长。具有3度和10度的面角的DTL加速了3meV至10MeV的质子梁,长4.3米。电磁体四弦(EMQs)用作DTL中的聚焦散焦聚焦散焦(FFDD)格式方案中的聚焦元件。在DTL中的RFQ和DTL和DTL中的8个漂移管(DT)之间的四极针用于DTL中的横向匹配。我们调查了梁动力学,实现高传输和沿DTL的射精的小增长。我们还显示了DTL中光束跟踪模拟的结果。我们的研究表明,影响高强度质子LINAC的喷射器中梁动力学的主要参数。

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