A new complex baseband model for Rydberg atomic quantum receivers captures signal-dependent shot noise, reveals an operating-point gain-noise tradeoff, and shows MIMO superiority over RF-MIMO requires the quantum noise floor to be lower.
Rydberg atomic quantum MIMO receivers for the multi-user uplink
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A self-superheterodyne Rydberg vapor-cell array uses satellite Doppler for IF generation and optimizes cell-level LO amplitudes and phases to shape the effective channel and raise Shannon capacity.
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Signal-Dependent Shot Noise Modeling of Rydberg Atomic Quantum Receivers: A Design Perspective
A new complex baseband model for Rydberg atomic quantum receivers captures signal-dependent shot noise, reveals an operating-point gain-noise tradeoff, and shows MIMO superiority over RF-MIMO requires the quantum noise floor to be lower.
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Cell-Level Channel Shaping for Rydberg Atomic Quantum Receivers in Satellite Uplinks With Doppler-Enabled Superheterodyne Reception
A self-superheterodyne Rydberg vapor-cell array uses satellite Doppler for IF generation and optimizes cell-level LO amplitudes and phases to shape the effective channel and raise Shannon capacity.