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Microwave Communication Under Weak Intensity to Quantumized Level:Recent Progress and Future Challenges

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摘要 We provide an overview of the recent progresses on the system architecture design and performance prediction for microwave signal detection under weak signal intensity regime,up to quantumized level.The technique roadmap includes two perspectives,the opto-electro-mechanical(OEM)and superconducting devices.For the former one,we first overview the concept of OEM,and then introduce the signal detection based on capacitive-opto-electro-mechanical systems and piezoopto-electro-mechanical systems.For the latter one,we first overview the concept and architecture of Josephson junction,and then introduce the signal detection based on superconducting Hanbury Brown-Twiss(HBT)experiments andΛenergy-level splitting system.Besides,we review the microwave detection based on Rydberg atom system.We believe that this overview can provide a guidance for future transmission limit,signal processing,detection device fabrication and real experiments.
出处 《Journal of Communications and Information Networks》 CSCD 2021年第1期17-31,共15页 通信与信息网络学报(英文)
基金 National Key Research and Development Program of China(2018YFB1801904) Key Program of National Natural Science Foundation of China(61631018) Key Research Program of Frontier Sciences of CAS(QYZDY-SSWJSC003) Huawei Innovation Project。
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