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Design, construction, and test of a 473 MHz four-rod cavity RFQ.

机译:473 MHz四杆腔RFQ的设计,构造和测试。

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摘要

An RFQ accelerator using the new four-rod cavity design has been fabricated and successfully tested at Texas Accelerator Center. The RFQ is designed to accelerate a 10 mA {dollar}Hsp-{dollar} ion beam from 30 keV to 500 keV with the operating frequency of 473 MHz. This new type of RFQ structure not only promises simplicity of design, construction, and operation, but also can be manufactured to operate at higher frequencies than previously achieved by other four-rod type RFQs. Combination of simplicity and compactness due to higher operating frequencies (400 to 500 MHz) makes the design desirable for injector of proton accelerators, medical linear accelerators, and variety of other applications. This dissertation presents the steps I went through in inventing, developing, and experimentally testing this new RFQ design. First an introduction to accelerators is given, and the basic accelerator physics terminologies are defined. The principles of operations of the RFQs are described, and the theory behind new type of RFQ structure is explained. Then the beam dynamics and cavity design of the RFQ are presented. Finally, the mechanical design and construction procedure are discussed, and experimental results of rf tests and actual {dollar}Hsp-{dollar} beam test are given.
机译:使用新的四杆腔设计的RFQ加速器已经在德克萨斯加速器中心制造并成功测试。 RFQ旨在以473 MHz的工作频率将10 mA {dollar} Hsp- {dollar}离子束从30 keV加速到500 keV。这种新型的RFQ结构不仅保证了设计,构造和操作的简便性,而且还可以制造成以比以前其他四杆型RFQ更高的频率工作。由于较高的工作频率(400至500 MHz)而产生的简单性和紧凑性相结合,使该设计对于质子加速器,医用线性加速器和各种其他应用的喷射器而言是理想的。本文介绍了我在发明,开发和实验测试这种新的RFQ设计时所经历的步骤。首先,对加速器进行了介绍,并定义了加速器的基本物理术语。描述了RFQ的操作原理,并解释了新型RFQ结构背后的理论。然后介绍了RFQ的光束动力学和腔设计。最后,讨论了机械设计和施工程序,并给出了射频测试和实际的dolHsp--梁测试的实验结果。

著录项

  • 作者

    Kazimi, Reza.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高能物理学;
  • 关键词

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