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首页> 外文期刊>Fusion Engineering and Design >Proton beam simulation of duoplasmatron ion source for diagnostic neutral beam of Alborz tokamak
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Proton beam simulation of duoplasmatron ion source for diagnostic neutral beam of Alborz tokamak

机译:Alborz托卡马克诊断中性束的等离子体质子辐射源的质子束模拟。

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摘要

Plasma (ion) sources such as duoplasmatron are widely used in several important technological applications. In this paper, the extraction of the proton beam from the duoplasmatron ion source has been simulated with Computer Simulation Technology (CST) software through its particle tracking module as a part of the verification process determining the operational parameters of a new beamline. The obtained results indicated that minimum divergence was achieved when the DP perveance is equal to 0.47 of the perveance of planar diode, which is close to the theoretical value of the optimum divergence. The plasma boundary location in front of the ground electrode was considered as the simulation parameter. This parameter depends on the plasma density and magnetic field lines configuration. In the present study, simulated beam divergence has been compared with experimental data obtained from image processing of side-view of beam with Mathlab code. The applied parameters in all simulations are determined based on the required features of DP ion source in Amirkabir University of Technology (ADP) which is currently being constructed.
机译:等离子体(离子)源,例如杜拉等离子体加速器,已广泛用于几种重要的技术应用中。在本文中,已经使用计算机模拟技术(CST)软件通过其粒子跟踪模块对从杜拉等离子体加速器离子源中提取质子束进行了模拟,这是确定新束线操作参数的验证过程的一部分。获得的结果表明,当DP导通度等于平面二极管的导通度的0.47时,可以实现最小发散度,接近最佳发散度的理论值。接地电极前面的等离子体边界位置被视为模拟参数。该参数取决于等离子体密度和磁场线配置。在本研究中,已将模拟光束发散与使用Mathlab代码从光束侧视图图像处理获得的实验数据进行了比较。在所有模拟中应用的参数是根据正在构建的阿米尔卡比尔技术大学(ADP)中DP离子源的所需功能确定的。

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