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Phase-Rotated Symbol Spreading for Scalable Rydberg Atomic-MIMO Detection
Journal article   Peer reviewed

Phase-Rotated Symbol Spreading for Scalable Rydberg Atomic-MIMO Detection

Jiuyu Liu, Yi Ma and Rahim Tafazolli
IEEE Wireless Communications Letters, Vol.15, pp.1573-1577
27/01/2026

Abstract

Computational modeling Detection algorithms MIMO multiple-input multiple-output (MIMO) Radio frequency Receivers RF signals Rydberg atomic (RA) receiver scalable RA-MIMO detection Spectral efficiency Symbols Vectors Noise
Multiple-input multiple-output (MIMO) systems using Rydberg atomic (RA) receivers face significant scalability challenges in signal detection due to their nonlinear signal models. This letter proposes phase-rotated symbol spreading (PRSS), which transmits each symbol across two consecutive time slots with an optimal \boldsymbol π /2 phase offset. PRSS enables reconstruction of an effective linear signal model while maintaining spectral efficiency and facilitating the use of conventional RF-MIMO detection algorithms. Simulation results demonstrate that PRSS achieves greater than 2.5 dB and 10 dB bit error rate improvements compared to current single-transmission methods when employing optimal exhaustive search and low-complexity sub-optimal detection methods, respectively.
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