arXiv · 2609.01180
A Novel Space-Time Coding Architecture for Rydberg Atomic Quantum Receiver-Based Systems
Abstract
Rydberg atomic quantum receivers (RAQRs) offer high sensitivity and wide tunability, but their magnitude-based readout yields a nonlinear model incompatible with conventional complex-valued multi-input multi-output (MIMO) processing. We propose a low-complexity space-time coding framework for point-to-point RAQR-assisted MIMO links. Data symbols are encoded using real orthogonal designs, while strong-reference heterodyne reception yields an equivalent real-valued linear model. The preserved orthogonality enables matched filter symbol-wise detection without matrix inversion or vector search. An analytical bit error probability expression is derived, proving the proposed scheme achieves the full transmit-receive diversity. Simulations validate the analysis and demonstrate improved performance over spatial multiplexing benchmarks.
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Asifa Zannat, Milad Abolpour, Dani Korpi, Mikko A. Uusitalo, Mikko Valkama, Ertugrul Basar. 2026-09-01. A Novel Space-Time Coding Architecture for Rydberg Atomic Quantum Receiver-Based Systems. https://arxiv.org/abs/2609.01180
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