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Study of the Beam Divergence in Diamond Field Emitter Array Cathodes

机译:金刚石场发射极阵列阴影分歧的研究

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We present the results of beam divergence studies for the diamond field emitter array (DFEA) cathodes producing high-current-density electron beams. At Los Alamos National Laboratory (LANL), we fabricate and test the micrometer-scale diamond pyramids with nanometer-scale sharp tips for use as an electron beam source for a compact dielectric laser accelerator. For the beam divergence measurements, we assembled a test stand consisting of a DFEA cathode, a small mesh aperture anode, and a screen representing of a sapphire disk coated with ZnO (AZO) for beam visualization. A negative voltage of about 40 keV is applied to the cathode, and the mesh and the screen are kept at ground. We record the spot size corresponding to the size of the electron beam on the AZO screen past the mesh anode at different mesh to screen distances. We also conduct the beam dynamics simulations with General particle Tracer (GPT). In this paper, we present the results of the experimental measurements and GPT simulations, along with calculations of the beam's divergence.
机译:我们介绍了生产高电流密度电子束的金刚石场发射器阵列(DFEA)阴极的光束分歧研究结果。在Los Alamos国家实验室(LANL),我们用纳米尺寸尖锐的提示来制造和测试微米级金刚石金字塔,以用作紧凑型电介质激光加速器的电子束源。对于光束发散测量,我们组装了由DFEA阴极,小网眼孔径阳极组成的测试支架,以及表示涂覆有ZnO(AZO)的蓝宝石盘的屏幕,用于光束可视化。将约40keV的负电压施加到阴极,并且网状物和屏幕保持在地面。我们记录与偶像屏幕上的电子束的尺寸对应的光斑尺寸超过不同网格的网状阳极到屏幕距离。我们还使用一般粒子示踪剂(GPT)进行梁动力学模拟。在本文中,我们介绍了实验测量和GPT模拟的结果,以及梁的分歧的计算。

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