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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >CW RFQ design and investigation for multi-charge-state acceleration of radioactive beams from BISOL
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CW RFQ design and investigation for multi-charge-state acceleration of radioactive beams from BISOL

机译:来自BISOL的多指导式放射性束加速度的CW RFQ设计与调查

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摘要

A continuous-wave (CW) heavy-ion radio frequency quadrupole (RFQ) has been designed to accelerate radioactive beams from the Beijing Isotope Separation On-Line (BISOL) facility. This RFQ will accelerate high-charge-state ions such as ~(132)Sn~(21+) from 3 keV/u to 300 keV/u with a vane length of 3.77m at a frequency of 81.25 MHz. The transmission efficiency reached 98.1% in simulation. The output longitudinal normalized rms emittance is 0.31 keV/u·ns. Tolerance analysis shows that this RFQ can handle a wide range of non-ideal beams while retaining a relatively high transmission efficiency and low longitudinal emittance. In order to increase the intensity of the radioactive ion beams (RIB), this RFQ will accelerate multi-charge-state beams simultaneously. In the case of the tin beam (Sn), we have studied the transmission of adjacent charge state beams and multi-charge-state beams in this RFQ. The transmission efficiency and output transverse beam quality of the multi-charge-state beams are close to the results of the single-charge-state beam, but the output longitudinal emittance is larger. For the radio frequency (RF) structural design, we have compared different types of RFQ, including an IH RFQ, a 4-rod RFQ and a 4-vane RFQ. We have selected a 4-vane RFQ design with dipole stablizer rods, due to the considerations of power consumption, the flatness of electric field, cooling convenience and machining efficiency. We have performed full 3D simulations with multi-physics analysis.
机译:连续波(CW)重离子射频四极(RFQ)旨在加速来自北京同位素分离在线(BISOL)设施的放射束。该RFQ将加速高电荷 - 状态离子,例如〜(132)Sn〜(21+),从3keV / u到300kev / u,叶片长度为3.77m,频率为81.25 MHz。模拟中的传输效率达到98.1%。输出纵向归一化RMS发射率为0.31 keV / u·ns。公差分析表明,该RFQ可以处理各种非理想光束,同时保持相对高的传输效率和低纵向发射率。为了增加放射性离子束(肋)的强度,该RFQ同时将加速多电荷状态波束。在锡梁(SN)的情况下,我们已经研究了该RFQ中的相邻充电状态波束和多充电状态波束的传输。多充电状态波束的传输效率和输出横向光束质量接近单电荷 - 状态光束的结果,但输出纵向发射率更大。对于射频(RF)结构设计,我们已经比较了不同类型的RFQ,包括IH RFQ,4杆RFQ和4- vane RFQ。由于功耗的考虑,电场平整度,冷却方便和加工效率,我们选择了一个带偶极稳定器杆的4 vane rfq设计。我们使用多物理分析进行了全面的3D模拟。

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  • 作者单位

    State Key Laboratory of Nuclear Physics and Technology Peking University No. 201 Chengfu Road Haidian District Beijing 100871 China;

    State Key Laboratory of Nuclear Physics and Technology Peking University No. 201 Chengfu Road Haidian District Beijing 100871 China;

    State Key Laboratory of Nuclear Physics and Technology Peking University No. 201 Chengfu Road Haidian District Beijing 100871 China;

    State Key Laboratory of Nuclear Physics and Technology Peking University No. 201 Chengfu Road Haidian District Beijing 100871 China;

    State Key Laboratory of Nuclear Physics and Technology Peking University No. 201 Chengfu Road Haidian District Beijing 100871 China;

    State Key Laboratory of Nuclear Physics and Technology Peking University No. 201 Chengfu Road Haidian District Beijing 100871 China;

    Department of Nuclear Physics China Institute of Atomic Energy Xin Town Fangshan District Beijing 102413 China;

    State Key Laboratory of Nuclear Physics and Technology Peking University No. 201 Chengfu Road Haidian District Beijing 100871 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仪器、仪表;
  • 关键词

    Accelerator modelling and simulations(multi-particle dynamics; single-particle dynamics); Beam dynamics;

    机译:加速器建模与仿真(多粒子动力学;单粒子动力学);梁动力学;

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