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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >IH-DTL design with modified KONUS beam dynamics for a synchrotron-based proton therapy system
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IH-DTL design with modified KONUS beam dynamics for a synchrotron-based proton therapy system

机译:IH-DTL设计,具有改进的KONUS束动力学特性,用于基于同步加速器的质子治疗系统

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摘要

A modified Kombinierte Null Grad Struktur (KONUS) beam dynamics for inter-digital H-mode (IH) drift tube linac (DTL) is proposed in this study. This modified KONUS beam dynamics, which is aperiodic and is suitable for a short (1 m) DTL design, is applied to a dedicated 325 MHz IH-DTL design at Tsinghua University. The IH-DTL, which is utilized in the injector of a synchrotron-based proton therapy system, is divided into three sections, namely, rebunching (-80 degrees), 0 degrees acceleration, and debunching (10 degrees). It is slightly different from the conventional KONUS cavity, and no focusing magnets exist in the cavity to reduce the cost of fabrication. The presence of 21 gaps in the cavity can accelerate a 15 mA proton beam from 3 MeV to 7 MeV. The cavity is tapered to adjust the gap voltage distribution, and the inner diameter varies from 196.8 mm to 232.6 mm. A cavity length of 1 m has a theoretical power consumption of 151 kW, whereas the maximum surface electric field is 40 MV/m (2.3 Kp). A new design process, which is similar to alternating-phase focusing method, is proposed. Details of the design method and results are presented in this study.
机译:在本研究中,提出了一种改进的用于叉指H型(IH)漂移管直线加速器(DTL)的Kombinierte零阶结构(KONUS)光束动力学。这种改进的KONUS光束动力学特性是非周期性的,适用于短(<1 m)DTL设计,已应用于清华大学专用的325 MHz IH-DTL设计。在基于同步加速器的质子治疗系统的注射器中使用的IH-DTL分为三个部分,即重新聚束(-80度),0度加速度和去聚束(10度)。它与常规的KONUS腔体略有不同,并且腔体中不存在聚焦磁体,从而降低了制造成本。腔中存在21个间隙可以将15 mA的质子束从3 MeV加速到7 MeV。空腔逐渐变细以调节间隙电压分布,内径从196.8毫米变化到232.6毫米。腔长为1 m时,理论功耗为151 kW,而最大表面电场为40 MV / m(2.3 Kp)。提出了一种类似于交相聚焦法的新设计过程。本研究介绍了设计方法和结果的详细信息。

著录项

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  • 作者单位

    Tsinghua Univ, Dept Engn Phys, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Key Lab Particle & Radiat Imaging, Minist Educ, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Lab Adv Radiat Sources & Applicat, Beijing 100084, Peoples R China|CAEP, Inst Fluid Phys, POB 919-106, Mianyang 621900, Peoples R China;

    Tsinghua Univ, Dept Engn Phys, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Key Lab Particle & Radiat Imaging, Minist Educ, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Lab Adv Radiat Sources & Applicat, Beijing 100084, Peoples R China;

    Tsinghua Univ, Dept Engn Phys, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Key Lab Particle & Radiat Imaging, Minist Educ, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Lab Adv Radiat Sources & Applicat, Beijing 100084, Peoples R China;

    Tsinghua Univ, Dept Engn Phys, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Key Lab Particle & Radiat Imaging, Minist Educ, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Lab Adv Radiat Sources & Applicat, Beijing 100084, Peoples R China;

    Tsinghua Univ, Dept Engn Phys, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Key Lab Particle & Radiat Imaging, Minist Educ, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Lab Adv Radiat Sources & Applicat, Beijing 100084, Peoples R China;

    Tsinghua Univ, Dept Engn Phys, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Key Lab Particle & Radiat Imaging, Minist Educ, CN-100084 Beijing, Peoples R China|Tsinghua Univ, Lab Adv Radiat Sources & Applicat, Beijing 100084, Peoples R China;

    CAEP, Inst Fluid Phys, POB 919-106, Mianyang 621900, Peoples R China;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    IH-DTL; KONUS; Proton therapy;

    机译:IH-DTL;锥体;质子治疗;

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