|国家预印本平台
首页|Realizing Quantum Wireless Sensing Without Extra Reference Sources: Architecture, Algorithm, and Sensitivity Maximization

Realizing Quantum Wireless Sensing Without Extra Reference Sources: Architecture, Algorithm, and Sensitivity Maximization

Realizing Quantum Wireless Sensing Without Extra Reference Sources: Architecture, Algorithm, and Sensitivity Maximization

来源:Arxiv_logoArxiv
英文摘要

Rydberg Atomic REceivers (RAREs) have shown compelling advantages in the precise measurement of radio-frequency signals, empowering quantum wireless sensing. Existing RARE-based sensing systems primarily rely on the heterodyne-sensing technique, which introduces an extra reference source to serve as the atomic mixer. However, this approach entails a bulky transceiver architecture and is limited in the supportable sensing bandwidth. To address these challenges, we propose self-heterodyne sensing, a novel concept where the self-interference caused by the transmitter acts as the reference signal. It is shown that a self-heterodyne RARE functions as an atomic autocorrelator, eliminating the need for extra reference sources while supporting sensing signals with much wider bandwidth than the conventional heterodyne-sensing method. Next, a two-stage algorithm is devised to estimate the target range for self-heterodyne RAREs. This algorithm is shown to closely approach the Cramer-Rao lower bound. Furthermore, we introduce the power-trajectory (P-trajectory) design for RAREs, which maximizes the sensing sensitivity through time-varying transmission power optimization. A heuristic P-trajectory is developed to capture the profile of the asymptotically optimal time-varying power. This design is then extended to practical P-trajectories by incorporating the transmitter power constraints. Numerical results validate the superiority of the proposed designs for quantum wireless sensing.

Mingyao Cui、Qunsong Zeng、Zhanwei Wang、Kaibin Huang

无线通信

Mingyao Cui,Qunsong Zeng,Zhanwei Wang,Kaibin Huang.Realizing Quantum Wireless Sensing Without Extra Reference Sources: Architecture, Algorithm, and Sensitivity Maximization[EB/OL].(2025-04-29)[2025-06-04].https://arxiv.org/abs/2504.21234.点此复制

评论