Optimizing phase modulation frequency and amplitude in hot Rydberg atoms extends RF receiver bandwidth, outperforming conventional detection for signals detuned by more than a few MHz and bridging 166 MHz transition gaps.
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Bridging gaps in Rydberg RF receivers using modulation transfer bandwidth enhancement
Optimizing phase modulation frequency and amplitude in hot Rydberg atoms extends RF receiver bandwidth, outperforming conventional detection for signals detuned by more than a few MHz and bridging 166 MHz transition gaps.