Bimodal Electron Gun R&D

Yong Jiang, Lin Wang, S. Shchelkunov, W. Fang, J. Hirshfield
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Abstract

A novel Bimodal Electron Gun is designed to apply microwaves at two harmonically-related frequencies in a half-cell RF gun to increase the RF breakdown threshold. This stratagem is intended to allow the RF gun structure to support a high acceleration gradient as well as to manipulate the emittance evolution in the half cell. The superposition of the harmonic field components can provide an engineered spatiotemporal distribution of the cathode field strength and phase by selecting a proper amplitude ratio and phase relationship between the first and second harmonic RF field components. This approach provides multiple control knobs over the cathode field, bunch length, and bunch charge density, and thus the suppression of the space charge effect and RF nonlinearity. The recent status of the Bimodal Electron Gun R&D is presented, including the designs of the novel two frequency directional coupler and rectangular-to-coaxial mode launchers.
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双峰电子枪研发
设计了一种新型双峰电子枪,在半单元射频枪中应用两个谐波相关频率的微波,以提高射频击穿阈值。该策略旨在使射频炮结构能够支持高加速度梯度,并操纵半电池中的发射度演变。谐波分量的叠加可以通过选择适当的一、二次谐波射频分量之间的幅值比和相位关系来提供阴极场强和相位的工程时空分布。这种方法提供了对阴极场、束长和束荷密度的多个控制旋钮,从而抑制了空间电荷效应和射频非线性。介绍了双峰电子枪的研发现状,包括新型双频定向耦合器和矩形-同轴模式发射装置的设计。
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