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Characterization of Rydberg-Atom Signal Reception of Dual-Frequency Signals Coupled with Two Energy Levels

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arxiv 2506.21123 v1 pith:PBF7PHWC submitted 2025-06-26 eess.SP

Characterization of Rydberg-Atom Signal Reception of Dual-Frequency Signals Coupled with Two Energy Levels

classification eess.SP
keywords signalsdifferentenergylevelsanalyzefrequenciesinterferenceatomic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Rydberg atomic sensors have been adopted for novel radio frequency (RF) measurement technique and the sensing capability for signals in multiple frequencies makes it attractive for multi-user communication. However, unlike traditional antennas where the signals in multiple frequencies are orthogonal, the received signals of atomic sensors corresponding to different energy levels will be downconverted to the baseband simultaneously, resulting in multi-user interference. Thus, in this paper, we analyze the mutual interference characteristics of two RF signals with different carrier frequencies coupling different energy levels. We introduce the joint response coefficient based on the receiver characteristics and analyze the interference of one user to another. We analyze the bit-error rate (BER) and symbol-error rate (SER) for two signals coupling two different energy levels. We also conduct experiments to validate the BER and SER results.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Rydberg Atomic Quantum Radio: A Comprehensive Survey From Wireless Communication Perspective

    eess.SP 2026-07 accept novelty 5.0

    A comprehensive survey bridges Rydberg-atom physics to wireless communications by reviewing architectures, response models, metric trade-offs, equivalent channels, and RAQ-enabled technologies for next-generation networks.

  2. Rydberg Atomic Quantum Radio: A Comprehensive Survey From Wireless Communication Perspective

    eess.SP 2026-07 unverdicted novelty 4.0

    A wireless-communications-oriented survey of Rydberg atomic quantum radios covering physics, architectures, sensitivity-bandwidth-frequency trade-offs, channel models, and SAGSIN use cases.