Fast thermometry for superconducting RF cavity testing

D. Orris, L. Bellantoni, R. Carcagno, H. Edwards, E. Harms, T. Khabiboulline, S. Kotelnikov, A. Makulski, R. Nehring, Y.P. Fermilab
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引用次数: 14

Abstract

Fast readout of strategically placed low heat capacity thermometry can provide valuable information of Superconducting RF (SRF) cavity performance. Such a system has proven very effective for the development and testing of new cavity designs. Recently, several resistance temperature detectors (RTDs) were installed in key regions of interest on a new 9 cell 3.9 GHz SRF cavity with integrated HOM design at FNAL. A data acquisition system was developed to read out these sensors with enough time and temperature resolution to measure temperature changes on the cavity due to heat generated from multipacting or quenching within power pulses. The design and performance of the fast thermometry system will be discussed along with results from tests of the 9 cell 3.9 GHz SRF cavity.
用于超导射频腔测试的快速测温
策略性放置的低热容测温仪的快速读数可以提供有价值的超导RF (SRF)腔性能信息。这样的系统已被证明是非常有效的开发和测试新的空腔设计。最近,几个电阻温度探测器(rtd)被安装在FNAL的一个新的9单元3.9 GHz SRF腔体的关键区域,该腔体采用集成HOM设计。研究人员开发了一种数据采集系统,以足够的时间和温度分辨率读取这些传感器,以测量由于功率脉冲内多重冲击或淬火产生的热量而导致的腔内温度变化。本文将讨论快速测温系统的设计和性能,以及9单元3.9 GHz SRF腔的测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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