首页> 外文期刊>World Journal of Nuclear Science and Technology >Ion Source Optimisation for Proton Beam Quality of the Van De Graaff Accelerator at iThemba LABS for Ion Beam Analysis
【24h】

Ion Source Optimisation for Proton Beam Quality of the Van De Graaff Accelerator at iThemba LABS for Ion Beam Analysis

机译:iThemba LABS上Van De Graaff加速器质子束质量的离子源优化,用于离子束分析

获取原文
           

摘要

The operating principles of the two duoplasmatron ion sources and the PIG source available for the Van de Graaff accelerator have been determined qualitatively, mainly by studying the extensive literature on ion sources. The main characteristics of the three sources have therefore been determined experimentally on an ion source test bench. Important parameters of the sources such as the pressure and temperature in different regions of the sources not measured, because of space limitations. However, in spite of these limitations in quantitative understanding of the sources, sufficient information to continue with the study of the beam transport through the Van de Graaff accelerator and its beamlines could be obtained from these measurements. With regard to beam intensity, lifetime and gas consumption the measurements showed that the hotcathode duoplasmatron is at present by far the most suitable source for the van de Graaff accelerator. The emittance of the ion source was measured with two slits, 90 mm apart, and a Faraday cup in the ion source test bench at an arc voltage of 83 V, an arc current of 1 Amp, a filament voltage of 24 V and an extraction voltage of 5 kV. The measured emittance for 90% of the beam intensity is 48π mm mrad. This figure will be used to calculate the beam transmission through the Van de Graaf accelerator. Different computer programs have been used for these calculations from the ion source through the terminal section, the accelerator and beam line up to the Nuclear Microprobe (NMP) for beam quality.
机译:主要通过研究有关离子源的大量文献,定性地确定了Van Du Graaff加速器可使用的两个Duoplasmatron离子源和PIG源的工作原理。因此,已在离子源测试台上通过实验确定了这三种离子源的主要特性。由于空间限制,未测量源的重要参数,例如源的不同区域中的压力和温度。但是,尽管在对光源的定量理解上存在这些限制,但仍可以从这些测量中获得足够的信息,以继续研究通过Van de Graaff加速器及其光束线的光束传输。关于光束强度,寿命和气体消耗,测量结果表明,热阴极双等离子体加速器目前是范德格拉夫加速器的最合适光源。在83 V的电弧电压,1 Amp的电弧电流,24 V的灯丝电压和萃取电压下,在离子源测试台中用两个相距90 mm的狭缝和一个法拉第杯测量离子源的发射率。电压为5 kV。 90%的光束强度测得的发射率为48πmm mrad。该图将用于计算通过Van de Graaf加速器的光束传输。从离子源到终端部分,加速器和束线,再到核微探针(NMP),用于束质量的计算已使用了不同的计算机程序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号