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.
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This review unifies optical and acoustic radiation forces and torques via local energy, momentum, and spin densities of wave fields and surveys their applications.
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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.
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Radiation forces and torques in optics and acoustics
This review unifies optical and acoustic radiation forces and torques via local energy, momentum, and spin densities of wave fields and surveys their applications.