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  1. Pubblicazioni

Superradiance from lattice-confined atoms inside hollow core fibre

Articolo
Data di Pubblicazione:
2019
Citazione:
Superradiance from lattice-confined atoms inside hollow core fibre / Okaba, S.; Yu, D.; Vincetti, L.; Benabid, F.; Katori, H.. - In: COMMUNICATIONS PHYSICS. - ISSN 2399-3650. - 2:1(2019), pp. 1-10. [10.1038/s42005-019-0237-2]
Abstract:
Unravelling superradiance, also known as superfluorescence, relies on an ensemble of phase-matched dipole oscillators and the suppression of inhomogeneous broadening. Here we report a superradiance platform that combines an optical lattice free from the ac Stark shift and a hollow-core photonic crystal fibre, enabling an extended atom-light interaction over 2 mm free from the Doppler effect. This system allows control of the atom spatial distribution and spectral homogeneity whilst efficiently coupling the radiation field to an optical fibre. The experimentally-observed and theoretically-corroborated temporal, spectral and spatial dynamic behaviours of the superradiance, e.g., superradiance ringing and density-dependent frequency shift, demonstrate a unique interplay between the trapped atoms and the fibre-guided field with multiple transverse modes. Our theory indicates that the resulting temporal evolution of the guided light shows a minimal beam radius of 3.1 mu m which is three times smaller than that of the lowest-loss fibre mode.
Tipologia CRIS:
Articolo su rivista
Keywords:
Hollow Core Fibers, Superradiance
Elenco autori:
Okaba, S.; Yu, D.; Vincetti, L.; Benabid, F.; Katori, H.
Autori di Ateneo:
VINCETTI Luca
Link alla scheda completa:
https://iris.unimore.it/handle/11380/1184802
Link al Full Text:
https://iris.unimore.it//retrieve/handle/11380/1184802/246914/s42005-019-0237-2.pdf
Pubblicato in:
COMMUNICATIONS PHYSICS
Journal
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URL

nature.com/commsphys/
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