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Physics design of a 10 MeV, 6 kW travelling wave electron linac for industrial applications

机译:工业应用的10 MeV,6 kW行波电子直线加速器的物理设计

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We present the physics design of a 10 MeV, 6 kW S-band (2856 MHz) electron linear accelerator (linac), which has been recently built and successfully operated at Raja Ramanna Centre for Advanced Technology, Indore. The accelerating structure is a $2pi/3$ mode constant impedance travelling wave structure, which comprises travelling wave buncher cells, followed by regular accelerating cells. The structure is designed to accelerate 50 keV electron beam from the electron gun to 10 MeV. This paper describes the details of electromagnetic design simulations to fix the mechanical dimensions and tolerances, as well as heat loss calculations in the structure. Results of design simulations have been compared with those obtained using approximate analytical formulae. The beam dynamics simulation with space charge is performed and the required magnetic field profile for keeping the beam focussed in the linac has been evaluated and discussed. An important feature of a travelling wave linac (in contrast with standing wave linac) is that it accepts the RF power over a band of frequencies. Threedimensional transient simulations of the accelerating structure along with the input and output couplers have beenperformed using the software CST-MWS to explicitly demonstrate this feature.
机译:我们介绍了10 MeV,6 kW S波段(2856 MHz)电子线性加速器(直线加速器)的物理设计,该直线加速器最近在印度拉多Ramanna先进技术中心建成并成功运行。加速结构是2pi / 3 $模式的恒定阻抗行波结构,其中包括行波聚集器单元,然后是规则的加速单元。该结构旨在将来自电子枪的50 keV电子束加速到10 MeV。本文介绍了电磁设计仿真的详细信息,以固定机械尺寸和公差以及结构中的热损失计算。设计模拟的结果已与使用近似分析公式获得的结果进行了比较。进行了带有空间电荷的射束动力学仿真,并且已经评估和讨论了将射束保持在直线加速器上所需的磁场分布。行波直线加速器的一个重要特征(与驻波直线加速器相反)是它在一个频带上接受RF功率。已经使用软件CST-MWS对加速结构以及输入和输出耦合器进行了三维瞬态仿真,以明确演示此功能。

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