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Calibration of the cryogenic measurement system of a resonant haloscope cavity

Dong He, Jie Fan, Xin Gao,Yu Gao,Nick Houston, Zhongqing Ji,Yirong Jin,Chuang Li, Jinmian Li,Tianjun Li,Shi-hang Liu,Jia-Shu Niu,Zhihui Peng,Liang Sun, Zheng Sun,Jia Wang, Puxian Wei, Lina Wu, Zhongchen Xiang,Qiaoli Yang,Chi Zhang,Wenxing Zhang,Xin Zhang,Dongning Zheng, Ruifeng Zheng, Jian-yong Zhou

CHINESE PHYSICS C(2024)

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摘要
Possible light bosonic dark matter interactions with the Standard Model photon have been searched using microwave resonant cavities. In this paper, we describe the cryogenic readout system calibration of a 7.138 GHz copper cavity with a loaded quality factor whose operation at a temperature of 22 mK is based on a dilution refrigerator. Our readout system consists of High Electron Mobility Transistors working as cryogenic amplifiers at 4 K, plus room-temperature amplifiers and a spectrum analyzer for signal power detection. We tested the system with a superconducting two-level system based on a single-photon source in the microwave frequency regime. We obtained an overall 95.6 dB system gain and -71.4 dB attenuation in the cavity's input channel. The effective noise temperature of the measurement system is 7.5 K.
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关键词
dark matter,superconducting two-level system,Mollow triplet
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