Photo-ionizing laser-cooled atoms in a MOT generates plasma that eliminates stray electric fields exceeding 10 V/cm, recovering stable coherent Rydberg excitation in a strontium tweezer array.
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2026 2representative citing papers
Compressive spectral multiplexing via FMLO in a waveguide-coupled Rydberg receiver compresses over 640 MHz spectrum into 126 kHz atomic bandwidth with compression ratio exceeding 1000 and ~10 dB SNR gain via maximal-ratio combining.
citing papers explorer
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Efficient photo-ionizing elimination of detrimental electric fields for Rydberg atoms
Photo-ionizing laser-cooled atoms in a MOT generates plasma that eliminates stray electric fields exceeding 10 V/cm, recovering stable coherent Rydberg excitation in a strontium tweezer array.
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Compressive Spectrum Sensing via Spectral Multiplexing in Rydberg Atomic Receiver
Compressive spectral multiplexing via FMLO in a waveguide-coupled Rydberg receiver compresses over 640 MHz spectrum into 126 kHz atomic bandwidth with compression ratio exceeding 1000 and ~10 dB SNR gain via maximal-ratio combining.