论文标题
在4.2K的温度下,线性加速器的射频窗口上的闪光灯升压
Supression of Flashover on Radio-frequency Window of Linear Accelerator at The Temperature of 4.2K
论文作者
论文摘要
在中国广告前端的运行期间,中国倡议加速器驱动系统(CIADS)的超导演示是在超导电腔的拾取式耦合器的表面上发生的,在低温条件下是不可能的。这严重影响了超导线性加速器的稳定操作。通过比较加速器的电动老化窗口上的闪存轨迹,在超导腔中的现场发射电子轨迹以及在线实验中的模拟结果,我们发现窗户表面上的闪光灯是由SRF腔中的磁场和现场发射电子的积累引起的。我们的结果表明,与大多数真空窗口闪存不同,其中特征和因果关系可以通过二级电子发射雪崩(SEEA)模型的机制来解释。最初在LINAC中的某些现象是根据在Per Flashover模型中讨论的机制的指导下解释的。根据结论,对拾音器耦合器进行了新的设计修改,并将其应用于Linac。在在线应用我们新设计的天线后,未对PT(发出传输功率耦合器)信号闪烁问题进行监测。本文的研究解决了闪存的问题,并提高了加速器稳定操作的性能。
During the operation of the China ADS Front End Superconducting Demo Linac of the China initiative Accelerator Driven System (CiADS), it was found that there was flashover happened on the surface of vacuum ceramic window in the pick-up coupler of superconducting cavity, which is uncommon under low temperature conditions. That seriously affects on the stable operation of the superconducting linear accelerator. By comparing the flashover trajectory on the electrical aging windows from the accelerator, the simulation results of the field emission electrons trajectory in the superconducting cavity, as well as online experiments, we found that the flashover on the window surface was caused by the bombardment and accumulation of field emission electrons from the SRF cavity. Our results suggest that, unlike most vacuum window flashovers, of which characteristic and causation can be explained by the mechanism of the secondary electron emission avalanche (SEEA) model. Some phenomena of the flashover in the linac have been initially explained under the guidance of the mechanism discussed in the PER flashover model. According to the conclusions, a new design modification to the pick-up coupler was made and applied to the linac. The Pt (the power coming out the transmitted power coupler) signal flicker problem has not been monitored after the online application of our newly designed antenna. The research in this article solved the flashover problem and improved the performance of stable operation of the accelerator.