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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Short-time change of heavy-ion microbeams with different mass to charge ratios by scaling method for the JAEA AVF cyclotron
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Short-time change of heavy-ion microbeams with different mass to charge ratios by scaling method for the JAEA AVF cyclotron

机译:JAEA AVF回旋加速器定标方法改变质荷比不同的重离子微束的短时变化

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摘要

The JAEA AVF cyclotron provides heavy-ion beams covering a wide range of linear-energy-transfers for microbeam formation. Two types of microbeam formation systems, one using a micro-aperture and the other focusing lenses, are installed on two vertical beam lines of the cyclotron. The average beam time for an experiment using the former system is usually less than 3 h, that is comparable to the time for cyclotron tuning. The time ratio between experiment and tuning determines the usage efficiency of the facility. In order to reduce the tuning time, a scaling method has been introduced to change the ion species with various mass to charge ratios (M/Q) in a shorter total time. The principle of the scaling method is to keep the magnetic rigidity of ion beams constant. This requirement is easily achieved by adjusting the extraction voltage of an ion source proportionally to the M/Q in the beam injection line. Although some cyclotron adjustments/other than the magnetic field strength at the extraction radius, are required, the tuning can be completed within 20 min, and no change is basically required in the beam transport line downstream of the cyclotron. Using the scaling method, 255 MeV~( 20)Ne~(7+), 335 MeV~( 20)Ne~(8+), and 440 MeV ~(40)Ar~(13+) beams were extracted from the cyclotron in sequence after the usual tuning of a 220 MeV ~(12)C~(5+). As a result, we have succeeded in changing the ion species of the heavy-ion microbeam within a total of 30 min.
机译:JAEA AVF回旋加速器提供了覆盖大范围线性能量转移的重离子束,用于形成微束。在回旋加速器的两条垂直光束线上安装了两种类型的微束形成系统,一种使用微孔,另一种使用聚焦透镜。使用前一种系统进行实验的平均光束时间通常少于3小时,与回旋加速器调谐的时间相当。实验和调整之间的时间比例决定了设备的使用效率。为了减少调整时间,已引入缩放方法以在更短的总时间内以各种质荷比(M / Q)改变离子种类。缩放方法的原理是保持离子束的磁刚度恒定。通过与束注入线中的M / Q成比例地调整离子源的提取电压,可以轻松实现这一要求。尽管除了回旋半径处的磁场强度以外,还需要进行一些回旋加速器调节/调整,但是调谐可以在20分钟内完成,并且回旋加速器下游的束传输线基本上不需要进行任何更改。使用定标方法从回旋加速器中提取了255 MeV〜(20)Ne〜(7 +),335 MeV〜(20)Ne〜(8+)和440 MeV〜(40)Ar〜(13+)束。通常是在220 MeV〜(12)C〜(5+)调谐后顺序进行的。结果,我们成功地在总共30分钟内改变了重离子微束的离子种类。

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  • 作者单位

    Department of Advanced Radiation Technology, Japan Atomic Energy Agency, 1233 Watanuki, Takasaki, Gunma 370-1292, Japan;

    Department of Advanced Radiation Technology, Japan Atomic Energy Agency, 1233 Watanuki, Takasaki, Gunma 370-1292, Japan;

    Department of Advanced Radiation Technology, Japan Atomic Energy Agency, 1233 Watanuki, Takasaki, Gunma 370-1292, Japan;

    Department of Advanced Radiation Technology, Japan Atomic Energy Agency, 1233 Watanuki, Takasaki, Gunma 370-1292, Japan;

    Department of Advanced Radiation Technology, Japan Atomic Energy Agency, 1233 Watanuki, Takasaki, Gunma 370-1292, Japan;

    Department of Advanced Radiation Technology, Japan Atomic Energy Agency, 1233 Watanuki, Takasaki, Gunma 370-1292, Japan;

    Research Center for Nuclear Physics, Osaka University, 10-1 Mihogaoka, Ibaraki, Osaka 567-0047, Japan;

    Department of Advanced Radiation Technology, Japan Atomic Energy Agency, 1233 Watanuki, Takasaki, Gunma 370-1292, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    AVF cyclotron; Scaling method; Isochronous field;

    机译:AVF回旋加速器;缩放方法;等时场;

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