PI Loop Resonance Control For The Dark Photon Experiment at 2 K Using A 2.6 GHz SRF Cavity

C. Contreras-Martinez, B. Giaccone, O. Melnychuk, A. Netepenko, Y. Pischalnikov, S. Posen, V. Yakovlev
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引用次数: 1

Abstract

Two 2.6 GHz SRF cavities are being used for a dark photon search at the vertical test stand (VTS) in FNAL, for the second phase of the Dark SRF experiment. During testing at 2 K the cavities experience frequency detuning caused by microphonics and slow frequency drifts. The experiment requires that the two cavities have the same frequency within the cavity's bandwidth. These two cavities are equipped with frequency tuners consisting of three piezo actuators. The piezo actuators are used for fine-fast frequency tuning. A proportional-integral (PI) loop utilizing the three piezos on the emitter was used to stabilize the cavity frequency and match the receiver cavity frequency. The results from this implementation will be discussed. The integration time was also calculated via simulation.
2.6 GHz SRF腔中2 K暗光子实验的PI环共振控制
在FNAL的垂直试验台(VTS)上,两个2.6 GHz SRF腔被用于暗光子搜索,这是暗SRF实验的第二阶段。在2k的测试中,腔体会到由微音和慢频漂移引起的频率失谐。实验要求两个腔在腔的带宽内具有相同的频率。这两个腔配有由三个压电致动器组成的频率调谐器。压电致动器用于精细快速的频率调谐。利用发射器上的三个压电元件,采用比例积分环稳定腔频率并与接收机腔频率相匹配。我们将讨论此实现的结果。通过仿真计算了积分时间。
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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