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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Design, development and power test of a spiral buncher RF cavity for the high current injector at IUAC
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Design, development and power test of a spiral buncher RF cavity for the high current injector at IUAC

机译:IUAC大电流喷油器螺旋集束器射频腔的设计,开发和功率测试

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摘要

A 48.5 MHz spiral buncher cavity in the Medium Energy Beam Transport section (MEBT) of the High Current Injector (HCI) provides longitudinal beam matching at the entrance of the Drift Tube Linac (DTL). The spiral type cavity has been chosen for its high shunt impedance and mechanical stability. The cylindrical chamber was fabricated of copper plated stainless-steel, while OFHC copper was used for the inner components, leading to better results than previous similar cavities. The experimentally measured quality factor, shunt impedance, and resonance frequency fit very well with the design values. The bead-pull measurement technique has been used to validate the electric field profile. A fine tuner has been developed and installed to correct the frequency shift while the cavity is phase and amplitude locked. An air-cooled power coupler has been designed, developed, and installed. The cavity has been tested up to the full power of 1 kW to produce 27 kV across each gap. The X-ray energy spectroscopy technique has been used to measure the gap voltages across the drift tubes. The designed and measured value of the quality factor is 4000 and 3600, respectively. The details of the design, development, and power testing are discussed in this article.
机译:大电流注入器(HCI)的中能束传输部分(MEBT)中的48.5 MHz螺旋束腔,在漂移管直线加速器(DTL)的入口处提供纵向束匹配。选择螺旋型腔是因为其具有高分流阻抗和机械稳定性。圆柱形腔室由镀铜不锈钢制成,而OFHC铜用作内部组件,因此比以前的类似腔室具有更好的结果。实验测得的品质因数,并联阻抗和谐振频率与设计值非常吻合。珠拉测量技术已用于验证电场分布。已经开发并安装了一个微调器,以在腔体被相位和幅度锁定时纠正频率偏移。风冷功率耦合器已被设计,开发和安装。该腔已经过最高1 kW的全功率测试,可以在每个间隙产生27 kV。 X射线能谱技术已用于测量漂移管两端的间隙电压。质量因数的设计值和测量值分别为4000和3600。本文讨论了设计,开发和电源测试的详细信息。

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