Near-deterministic single-atom loading on a microring resonator circuit on a photonic integrated circuit achieving C > 1 and 82% single-atom transfer probability.
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2 Pith papers cite this work. Polarity classification is still indexing.
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2026 2verdicts
UNVERDICTED 2representative citing papers
Surface charges on the nanofiber, generated via Rydberg-ground state collisional ionization enhanced by dipole trapping fields, produce time-evolving spectral features in Rydberg excitation that are suppressed by an external oscillating electric field.
citing papers explorer
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Near-deterministic single-atom loading on a photonic integrated circuit
Near-deterministic single-atom loading on a microring resonator circuit on a photonic integrated circuit achieving C > 1 and 82% single-atom transfer probability.
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Surface charges in a Rydberg atom-nanowaveguide hybrid quantum system
Surface charges on the nanofiber, generated via Rydberg-ground state collisional ionization enhanced by dipole trapping fields, produce time-evolving spectral features in Rydberg excitation that are suppressed by an external oscillating electric field.