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First annular-ring coupled structure cavity for the Japan Proton Accelerator Research Complex linac

机译:日本质子加速器研究中心直线加速器的首个环-环耦合结构腔

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The first annular-ring coupled structure (ACS) cavity for the Japan Proton Accelerator Research Complex (J-PARC) linac has been developed in order to confirm and establish its fabrication processes. This cavity includes 34 accelerating cells, which is 3.4 times as many as the prototype cavity (buncher) of the J-PARC ACS. The cell frequencies before brazing were tuned within the required accuracies. After brazing, the accelerating- and coupling-mode frequencies were 972.19 and 972.63 MHz on average, respectively, which were higher than the operating frequency of 972 MHz. Although the accelerating-mode frequency can be corrected to 972 MHz using adjustable plungers, these frequency errors adversely affected the on-axis electric field. This cavity was successfully conditioned up to 1.6 MW. This power corresponds to an accelerating field of $4.7ext{ }ext{ }mathrm{MV}/mathrm{m}$, which is 10% higher than the design value of $4.2ext{ }ext{ }mathrm{MV}/mathrm{m}$. In order to find the issue caused by the excited coupling cells, this cavity was also conditioned at the higher and lower frequencies that were detuned from the operating frequency of 972 MHz. Here we present the frequency tuning processes, the low-level rf measurements, and the high-power test results. We also discuss the most reasonable scenario for frequency tuning in future work.
机译:为了确定并建立其制造工艺,已经开发了用于日本质子加速器研究中心(J-PARC)直线加速器的第一个环形圈耦合结构(ACS)腔。该腔包含34个加速细胞,是J-PARC ACS原型腔(集束器)的3.4倍。钎焊前的单元频率在所需的精度范围内调整。钎焊后,加速模式频率和耦合模式频率分别平均为972.19 MHz和972.63 MHz,高于972 MHz的工作频率。尽管可以使用可调柱塞将加速模式的频率校正为972 MHz,但这些频率误差会对同轴电场产生不利影响。该腔已成功调节至1.6 MW。此幂对应于$ 4.7 text {} text {} mathrm {MV} / mathrm {m} $的加速字段,这比$ 4.2 text {} text {} 的设计值高10% mathrm {MV} / mathrm {m} $。为了找到由激发的耦合单元引起的问题,该腔还被设置在从972 MHz的工作频率失谐的更高和更低的频率上。在这里,我们介绍了频率调谐过程,低电平射频测量和高功率测试结果。我们还将讨论未来工作中最合理的频率调谐方案。

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