终于开始运行的SuperKEKB真空系统;终于开始运行的SuperKEKB真空系统;Vacuum System in the First Operation of SuperKEKB

Yusuke Suetsugu, Kyoko Shibata, Takuya Ishibashi, Mitsuru Shirai, Shinji Terui, Ken-ichi Kanazawa, H. Hisamatsu
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摘要

经过5年多的升级工作,KEK的非对称能量正电子对撞机SuperKEKB于2016年2月开始首次(第一阶段)调试,并于2016年6月成功结束。第一阶段调试的一项主要任务是对新的束流管道进行真空清洗,以期在下一次调试中获得足够长的束流寿命。随着束流剂量的增加,单位束流压升呈稳定下降趋势。另一项重要任务是检查各种新型真空元件在约1a的高光束电流下的稳定性。波纹管腔室、闸阀、连接角等在1a时温升均在几度以内,未发现严重问题。还证实了前厅和TiN涂层对正电子环中电子云eŠect (ECE)的抑制作用eŠectiveness。然而,在没有涂覆TiN的地方,观察到铝合金波纹管腔中的ECE。使用轴向磁场约为100g的永磁体成功地抑制了这种情况eŠect。在正电子环中也经常观察到伴随光束损失的压力爆发。下一个第二阶段调试的准备工作目前正在进行中,例如在碰撞点安装新的波束管道和另外六个波束准直器。
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いよいよ運転を開始したSuperKEKBの真空システム;いよいよ運転を開始したSuperKEKBの真空システム;Vacuum System in the First Operation of SuperKEKB
The ˆrst (Phase-1) commissioning of SuperKEKB, an asymmetric-energy electron-positron collider at KEK, began in February 2016, after more than 5 years of upgrade work on KEKB and successfully ended in June 2016. A major task of the Phase-1 commissioning was the vacuum scrubbing of new beam pipes in anticipation of a su‹ciently long beam lifetime in the next commissioning. The pressure rise per unit beam current decreased steadily with increasing beam dose, as expected. Another important task was to check the stabilities of various new vacuum components at high beam currents of approximately 1 A. The temperature increases of the bellows chambers, gate valves, connection ‰anges, and so on were less than several degrees at 1 A, and no serious problems were found. The eŠectiveness of the antechambers and TiN coating in suppressing the electron-cloud eŠect (ECE) in the positron ring was also conˆrmed. However, the ECE in the Al-alloy bellows chambers was observed where TiN had not been coated. The use of permanent magnets with an axial magnetic ˆeld of approximately 100 G successfully suppressed this eŠect. Pressure bursts accompanying beam losses were also frequently observed in the positron ring. The preparation for the next Phase-2 commissioning, such as the installations of new beam pipes at the collision point and of six more beam collimators, are now in progress.
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