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Status of the RFQ linac installation and conditioning of the Linear IFMIF Prototype Accelerator

机译:RFQ直线加速器的安装状态和线性IFMIF原型加速器的状态

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The Radio Frequency Quadrupole (RFQ) linac and 1.6 MW RF power system of the Linear IFMIF Prototype Accelerator (LIPAc) facility in the International Fusion Energy Research Center (IFERC) in Rokkasho (Japan) has been installed and conditioned. During the assembly and tuning process, the RFQ cavity was protected with a temporary tent from the potential deterioration of performance caused by dust. The vacuum in the cavity was improved through the 100?°C baking process of the cavity. The high power test of the 175?MHz RF systems up to 200?kW in CW for each of the eight RF chains was performed for checking its stable output reproducibility in Japan, before connecting 9–3/16?inch coaxial transmission lines from the RF chains to the RF input couplers of the cavity. It was confirmed that the eight RF chains provided the balanced RF power to the single RFQ cavity in-phase using a feedback loop and a synchronization system. The peak power in the cavity achieved 150?kW in the pulsed mode, which corresponds approximately to the required electric field to accelerate proton beam. Such RF conditioning process is ongoing to achieve 600?kW approximately required for deuteron beam commissioning planned in 2018.
机译:位于日本六所庄国际融合能源研究中心(IFERC)的线性IFMIF原型加速器(LIPAc)设施的射频四极(RFQ)直线加速器和1.6 MW RF电力系统已安装并调试。在组装和调试过程中,用临时帐篷保护了RFQ腔体,以防止灰尘引起的性能下降。通过空腔的100°C烘烤过程,可以提高空腔中的真空度。在连接9–3 / 16英寸同轴传输线之前,对八个RF链中的每个RF链进行了高达200W的175W MHz RF系统的大功率测试,以确保其在日本的稳定输出重现性。 RF链连接到腔体的RF输入耦合器。可以确定的是,八个RF链使用反馈环路和同步系统为单个RFQ腔同相提供了平衡的RF功率。在脉冲模式下,腔体中的峰值功率达到150?kW,大约相当于加速质子束所需的电场。正在进行这样的RF调节过程,以实现大约在2018年计划的氘核束调试所需的600?kW。

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