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IMPROVEMENT OF AN S-BAND RF-GUN CAVITY WITH A CS-TE PHOTO-CATHODE

机译:用CS-TE光阴极改进S波段RF枪腔

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A 1.6cell S-band photo-cathode RF-Gun is one of the good alternatives of the short pulse electron source. Therefore, we are operating as a high brightness short pulse electron source for studying a reaction of radiation chemistry [1], an inverse Compton scattering at Waseda University [2] and as an injector at KEK-ATF. To improve an electron beam quality and reduce a dark current, our group decided to improve the RF-Gun cavity. The resonance frequency tuning of the half cell of existing RF-gun was performed by the torque control of Helicoflex seal on the cathode plate and two moving rod type tuners with a tuning hole were installed on the full cell. Newly designed RF-Gun cavity has four compact tuners on each cell, which can be tune the frequency to deform the cavity wall, to remove the Helicoflex seal and tuning holes that were considered to be the major cause of electric discharge and/or dark current source [3]. According to these improvements, the Q-value and shunt impedance of the cavity is 20% larger than that of existing guns. As the result, the reduction of dark current is demonstarated and the beam energy is reached up to 5.5MeV at 10MW RF input.
机译:1.6Cell S波形阴极RF-GUN是短脉冲电子源的良好替代品之一。因此,我们作为高亮度短脉冲电子来源,用于研究辐射化学的反应[1],在Wasea大学的反康顿散射[2],作为Kek-atf的注射器。为了提高电子束质量并减少暗电流,我们的组决定改善RF枪腔。通过在阴极板上的Helicoflex密封件的扭矩控制和具有调谐孔上的两个移动杆型调谐器进行的旋转频率调谐,并安装在整个电池上。新设计的RF枪腔在每个电池上有四个紧凑的调谐器,可以调整频率变形腔壁,以去除被认为是放电和/或暗电流的主要原因的螺旋形密封和调谐孔来源[3]。根据这些改进,腔的Q值和腔的分流阻抗比现有枪更大的20%。结果,暗电流的降低是恶性的,并且在10MW的RF输入中达到最高可达5.5mev的光束能量。

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