物理
放大器
稀释冰箱
校准
微波食品加热
微波腔
低温学
噪音(视频)
噪声温度
光学
光电子学
光子
冷藏车
图像(数学)
人工智能
热力学
量子力学
CMOS芯片
计算机科学
作者
Dong 冬 He 贺,Jie 洁 Fan 樊,Xin 昕 Gao 高,Yu 宇 Gao 高,Nick Houston,Zhongqing 忠庆 Ji 姬,Yirong 贻荣 Jin 金,Chuang 闯 Li 李,Jinmian 金勉 Li 李,Tianjun 田军 Li 李,Shi-hang 世航 Liu 刘,Jia-Shu Niu,Zhihui 智慧 Peng 彭,Liang 亮 Sun 孙,Zheng 铮 Sun 孙,Jia 佳 Wang 王,Puxian 镨先 Wei 卫,Lina 利娜 Wu 吴,Zhongchen 忠诚 Xiang 相,Qiaoli 峤立 Yang 杨
出处
期刊:Chinese Physics C
[IOP Publishing]
日期:2024-04-24
卷期号:48 (7): 073004-073004
被引量:1
标识
DOI:10.1088/1674-1137/ad4267
摘要
Abstract 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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