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Design and beam dynamic simulation of the thermionic RF electron gun with external resonant cavity for transverse emittance reduction

机译:具有外部谐振腔的热离子RF电子枪的设计与梁动态模拟,用于横向发射率降低

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摘要

The accelerator components and radiation production systems at the PBP-CMU Electron Linac Laboratory of the Plasma and Beam Physics Research Facility are currently being developed and upgraded to make it possible for generation of the mid-infrared free-electron laser (MIR FEL) and the coherent intense terahertz (THz) radiation via transition radiation and superradiant undulator radiation. To generate a high brightness radiation, a high quality electron beam is crucially required. One of the important keys for this issue is the good performance and reliable electron source. Development of a new thermionic radio-frequency (RF) electron gun is foreseen at our facility. The design of the new RF gun was conducted with the aim to reduce transverse emittance while keeping the longitudinal phase space distribution that is suitable for the bunch compression with the alpha magnet. The present design of the PBP-CMU RF electron gun, which has 1-1/2 cell TM010 reentrant cylindrical standing-wave resonant cavities and a side-coupling cavity, was used as the starting model for this work. The shape and dimensions of the new RF gun were optimized and the electromagnetic field distribution was simulated by using the program CST Microwave Studio 2016. Electron beam dynamic simulations were done with program ASTRA. The initial particle distribution from thermionic emission process was created by using the self-developed MATLAB script that provides the thermal emittance values corresponding well to the theoretical values. The results of this work suggest that by adding an external resonant cavity with a rounded pill-box shape to the present RF gun model can reduce the transverse emittance. This additional cavity has an optimal length of 25 mm and is connected to the present RF gun at the position 13 mm downstream the second cavity exit. The RF wave is coupled from the second cavity to the external cavity via the second side-coupling cavity. The entire structure finally has a resonant frequency of 2856.03 MHz, an unloaded quality factor of 15623 and a shunt impedance of 1.18 M Omega. The maximum electric field values in the first, the second and the external cavity are 32.8, 65.0 and 29.8 MV/m, respectively. The results from beam dynamic simulations show that this new design RF gun should be able to produce electron bunches with a charge of 170 pC per bunch, a maximum kinetic energy of 2.72 MeV and an energy spread of 540 keV. The simulated horizontal and vertical normalized emittances of 90% beam were respectively reduced by 11.6% and 4.5% compared to the values obtained from the original PBP-CMU RF gun. Furthermore, it was found that the transverse emittance is conserved at the distance longer than 60 cm downstream the external cavity exit.
机译:目前正在开发和升级PBP-CMU电子LINAC实验室的加速器组件和辐射生产系统,以使得产生中红外自由电子激光器(MIR FEL)和升级通过过渡辐射和超辐射波动辐射相干强烈的太赫兹(THz)辐射。为了产生高亮度辐射,大致需要高质量的电子束。这个问题的重要键之一是良好的性能和可靠的电子来源。在我们的设施预见了新的热离子射频(RF)电子枪的开发。新的RF枪的设计具有旨在降低横向发射率的目的,同时保持适合于用α磁体的束压缩的纵向相空间分布。 PBP-CMU RF电子枪的本设计具有1-1 / 2电池TM010克雷柱柱谐振腔和侧面耦合腔作为该工作的起动模型。优化了新的RF枪的形状和尺寸,通过使用PROGRAPT MicroWave Studio 2016模拟了电磁场分布。电子束动态模拟是用程序Astra完成的。来自热离子发射过程的初始粒子分布是通过使用自我开发的MATLAB脚本来创建的,该脚本提供对应于理论值的热发射值。该工作的结果表明,通过向本RF枪模型添加具有圆形丸盒形状的外部谐振腔,可以降低横向发射率。该额外的腔具有25mm的最佳长度,并且连接到第二腔出射出的下游的位置13mm的位置的RF枪。 RF波通过第二侧耦合腔从第二腔与第二腔连接到外腔。整个结构最终具有2856.03MHz的谐振频率,卸载质量因子为15623,分流阻抗为1.18米。第一,第二和外腔中的最大电场值分别为32.8,65.0和29.8 mV / m。光束动态模拟的结果表明,这款新设计RF枪应能够生产每束170千台电池的电子束,最大动能为2.72 MEV,能量扩展为540 kev。与原始PBP-CMU RF枪获得的值相比,90%光束的模拟水平和垂直归一化发射分别减少11.6%和4.5%。此外,发现横向发射率在外腔出口下游长度为60厘米的距离处。

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  • 作者

    Saisa-ard C.; Rimjaem S.;

  • 作者单位

    Chiang Mai Univ Fac Sci Dept Phys & Mat Sci Plasma & Beam Phys Res Facil Chiang Mai 50200 Thailand|Chiang Mai Univ Fac Sci Dept Phys & Mat Sci PhD Program Phys Chiang Mai 50200 Thailand|Thailand Ctr Excellence Phys Commiss Higher Educ Bangkok 10400 Thailand;

    Chiang Mai Univ Fac Sci Dept Phys & Mat Sci Plasma & Beam Phys Res Facil Chiang Mai 50200 Thailand|Thailand Ctr Excellence Phys Commiss Higher Educ Bangkok 10400 Thailand|Chiang Mai Univ Res Ctr Phys & Astron Chiang Mai 50200 Thailand;

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  • 正文语种 eng
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  • 关键词

    RF gun; Thermionic emission; Transverse emittance reduction; Effect of external RF field;

    机译:RF枪;热离子发射;横向发射率降低;外部RF场的影响;

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