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Conceptual Design of Beam Tube of 300 KeV Electron Electrostatic Accelerator

机译:300 keV电子静电加速器梁管的概念设计

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The column of electron electrostatic accelerator is one of the critical components in electrostatic accelerator. The geometrical design of such accelerator must be as such that in the case of applying voltage to its electrodes, not only should its equipotential surfaces and its gradient accelerate the beam particles up to desired energy, but also it should focus the beam and hinder broadening of energy distribution of accelerated particles. The immersed electrodes in the field are, geometrically, perpendicular to optical axis around the medial plane. Numerous models that can be used in the distribution of axial potential, have been presented and linear model, analytical model, double-column electrode model and polynomial electrode model are among them. In this paper, series expansions based on Bessel functions is used to obtain the axial potential distribution of immersed accelerator electrodes in double-electrode field and it is then compared to the mentioned models by solving the final equation via the least square method. Finally, by using CST Studio software and the information we obtained from the axial potential, the column of electron accelerator with its energy distribution and its optimal electron output beam radius is designed and simulated.
机译:电子静电促进剂的柱是静电加速器中的关键部件之一。这种加速器的几何设计必须是这样,在向其电极施加电压的情况下,它不仅应该将梁粒子加速到所需的能量,而且它应该聚焦光束并阻碍较宽加速粒子的能量分布。该场中的浸没电极是几何上,垂直于内侧平面的光轴。已经提出和线性模型,分析模型,双柱电极模型和多项式电极模型呈现了许多可用于轴向电位的模型。在本文中,基于贝塞尔函数的串联扩展用于获得双电极场中浸没式加速器电极的轴向电位分布,然后通过通过最小二乘法解决最终方程来与所提到的模型进行比较。最后,通过使用CST工作室软件和从轴向电位获得的信息,设计和模拟了具有能量分布的电子加速器柱及其最佳电子输出束半径。

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