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Design considerations of a novel two-beam accelerator.

机译:新型两束加速器的设计考虑。

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This thesis reports the design study of a new type of charged particle accelerator called the Twobetron. The accelerator consists of two beams of electrons traveling through a series of pillbox cavities. The power of a high current annular beam excites an electromagnetic mode in the cavities, which, in turn, drives a low current on-axis pencil beam to high energy. We focus on the design considerations that would make use of existing pulsed power systems, for a proof-of-principle experiment. Potential applications of this new device include radiotherapy, materials processing, and high energy accelerators.; The first phase of the research involves analytic description of the accelerating process. This reveals the problem of phase slippage. Derbenev's proposed cure of beam radius modulation is analyzed. Further studies include the effect of initial phase and secondary beam loading. Scaling laws to characterize the Twobetron's performance are derived.; Computer simulation is performed to produce a self-consistent analysis of the dynamics of the space charge and its interaction with the accelerator structure. Particle-in-cell simulations answer several questions concerning beam stability, cavity modes, and the nature of the structure. Specifically, current modulation on the primary beam is preserved in the simulations. However, these simulations also revealed that mode competition and significant cavity coupling are serious issues that need to be addressed.; Also considered is non-axisymmetric instability on the driver beam of the Twobetron, in particular, the beam breakup instability (BBU), which is known to pose a serious threat to linear accelerators in general. We extend the classical analysis of BBU to annular beams. The effect of higher order non-axisymmetric modes is also examined. It is shown that annular beams are more stable than pencil beams to BBU in general. Our analysis also reveals that the rf magnetic field is more important than the rf electric field in contributing to BBU growth.; We next address the issue of primary beam modulation. Both particle-in-cell and analytic investigation showed that the usual relativistic klystron amplifiers (RKA) mechanism cannot provide full beam modulation at convenient levels of external rf drive. However, the recent discovery at the Air Force Phillips Laboratory of the injection locked relativistic klystron oscillator suggests that electromagnetic feedback between the driver cavity and the booster cavity might significantly enhance the current modulation. A simple model is constructed to analyze this cavity coupling and its mutual interaction with the primary beam. Quantitative agreement is found between our model and the Phillips Laboratory experiments. This analysis suggests that significant current modulation on the primary beam may be achieved with low level external rf drive.
机译:本文报道了一种新型的带电粒子加速器Twobetron的设计研究。加速器由两束电子束组成,这些束电子穿过一系列药丸腔。高电流环形光束的功率在空腔中激发电磁模式,进而将低电流同轴铅笔束驱动为高能量。我们将重点放在可以利用现有脉冲电源系统的设计考虑上,以进行原理验证实验。这种新设备的潜在应用包括放射疗法,材料处理和高能加速器。研究的第一阶段涉及加速过程的解析描述。这揭示了相位滑移的问题。分析了Derbenev提出的光束半径调制的解决方法。进一步的研究包括初始阶段和次要光束载荷的影响。得出表征Twobetron性能的比例定律。执行计算机仿真以产生对空间电荷动力学及其与加速器结构相互作用的自洽分析。单元中粒子模拟回答了有关光束稳定性,腔模和结构性质的几个问题。具体而言,在仿真中保留了对主光束的电流调制。然而,这些模拟还表明,模式竞争和明显的腔耦合是需要解决的严重问题。还考虑了Twobetron的驱动器光束的非轴对称不稳定性,特别是光束破裂不稳定性(BBU),众所周知,光束分解不稳定性通常会对线性加速器造成严重威胁。我们将BBU的经典分析扩展到环形梁。还检查了高阶非轴对称模式的影响。结果表明,环形光束通常比笔直光束对BBU更为稳定。我们的分析还表明,射频磁场比射频电场对BBU的生长更重要。接下来,我们解决初级光束调制的问题。单元中粒子分析和分析研究均表明,常规的相对论速调管放大器(RKA)机制无法在方便的外部射频驱动水平上提供全光束调制。但是,最近在空军菲利普斯实验室发现了注入锁定的相对论速调管振荡器,这表明驱动腔与增强腔之间的电磁反馈可能会显着增强电流调制。构建一个简单的模型来分析这种腔耦合及其与主光束的相互作用。在我们的模型和菲利普斯实验室实验之间发现了定量一致性。该分析表明,使用低电平外部射频驱动可以实现对主光束的显着电流调制。

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