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Electron beam and RF characterization of a high-brightness X-band photoinjector

机译:高亮度X波段光电注入器的电子束和RF表征

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We report detailed experimental results on an X-band (8.547 GHz) RF photoinjector, currently being commissioned at UC Davis on the LLNL site. The device operates with an average accelerating gradient in the 50-100 MeV/m range, and produces relativistic (1.5-2 MeV) photoelectron bunches, with a measured relative energy spread > 1.8%, at the resolution limit of our energy spectrometer. The measured quantum efficiency is 2/spl times/10/sup -5/, at the maximum of the Schottky curve, and the 90% normalized emittance is measured at 1.65 /spl pi/-mm mrad for 20 pC of charge. The bunch duration is extremely short, under the 700 fs resolution of our streak camera. Timing jitter has also been measured directly from the delay between the UV light diffused by the photocathode, and Cerenkov radiation produced by the photoelectrons; a systematic delay is found, corresponding to the time-of-flight difference between the UV photons and the accelerated electrons, and the additional timing jitter is estimated at 5 ps, or 15 degrees of RF phase. Finally, coherent synchrotron experiments are underway, as the photoelectron bunches radiate coherently up to the THz region.
机译:我们报告了X波段(8.547 GHz)射频光注入器的详细实验结果,该注入器目前在LLNL网站的UC Davis实验室进行了调试。该设备以50-100 MeV / m范围内的平均加速梯度运行,并产生相对论(1.5-2 MeV)的光电子束,在我们的能谱仪的分辨率极限下,测得的相对能量分布> 1.8%。在肖特基曲线的最大值处,测得的量子效率为2 / spl乘以10 / sup -5 /,对于20 pC的电荷,在1.65 / spl pi / mm mrad处测量90%的归一化发射率。在我们条纹相机的700 fs分辨率之下,束持续时间非常短。定时抖动也直接根据光阴极扩散的紫外线与光电子产生的切伦科夫辐射之间的延迟来测量;找到了一个系统延迟,该延迟对应于紫外线光子和加速电子之间的飞行时间差,并且附加时序抖动估计为5 ps或RF相位15度。最后,相干同步加速器实验正在进行中,因为光电子束以相干方式辐射到太赫兹区域。

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