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RF study and 3-D simulations of a side-coupling thermionic RF-gun

机译:侧面耦合热电子射频枪的射频研究和3D模拟

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A thermionic RF-gun for generating ultra-short electron bunches was optimized, developed and used as a source at a linac-based THz radiation research laboratory of the Plasma and Beam Physics Research Facility, Chiang Mai University, Thailand. The RF-gun is a π/2-mode standing wave structure, which consists of two S-band accelerating cells and a side-coupling cavity. The 2856 MHz RF wave is supplied from an S-band klystron to the gun through the waveguide input-port at the cylindrical wall of the second cell. A fraction of the RF power is coupled from the second cell to the first one via a side-coupling cavity. Both the waveguide input-port and the side-coupling cavity lead to an asymmetric geometry of the gun. RF properties and electromagnetic field distributions inside the RF-gun were studied and numerically simulated by using computer codes SUPERFISH 7.19 and CST Microwave Studio 2012°. RF characterizations and tunings of the RF-gun were performed to ensure the reliability of the gun operation. The results from 3D simulations and measurements are compared and discussed in this paper. The influence of asymmetric field distributions inside the RF-gun on the electron beam properties was investigated via 3D beam dynamics simulations. A change in the coupling-plane of the side-coupling cavity is suggested to improve the gun performance.
机译:在泰国清迈大学等离子和束物理研究设施的基于直线加速器的太赫兹辐射研究实验室,对用于产生超短电子束的热电子射频枪进行了优化,开发和使用。射频枪是一种π/ 2模式驻波结构,由两个S波段加速单元和一个侧面耦合腔组成。 2856 MHz的射频波从S波段速调管通过第二个单元圆柱壁上的波导输入端口提供给喷枪。一部分RF功率通过侧面耦合腔从第二单元耦合到第一个单元。波导的输入端口和侧面耦合腔都会导致喷枪的几何形状不对称。使用计算机代码SUPERFISH 7.19和CST Microwave Studio 2012°对RF枪内部的RF特性和电磁场分布进行了研究和数值模拟。进行RF枪的RF表征和调整以确保枪操作的可靠性。本文比较并讨论了3D模拟和测量的结果。通过3D射束动力学仿真研究了RF枪内部不对称场分布对电子束性能的影响。建议改变侧耦合腔的耦合平面以提高喷枪性能。

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