Four-wave mixing (FWM) can be either stimulated or occur spontaneously. The first process is intrinsically much stronger and well understood through classical nonlinear optics. The latter, also known as parametric fluorescence, can be explained only in the framework of a quantum theory of light. We experimentally demonstrated that, in a microring resonator, there is a simple relation between the efficiencies of these two processes that is independent of the nonlinearity and ring size. In particular, we have shown the average power generated by parametric fluorescence can be immediately estimated from a classical FWM experiment. These results suggest that classical nonlinear characterization of a photonic integrated structure can provide accurate information on its nonlinear quantum properties.

From classical four-wave mixing to parametric fluorescence in silicon microring resonators

AZZINI, STEFANO;GRASSANI, DAVIDE;GALLI, MATTEO;ANDREANI, LUCIO;LISCIDINI, MARCO;BAJONI, DANIELE
2012-01-01

Abstract

Four-wave mixing (FWM) can be either stimulated or occur spontaneously. The first process is intrinsically much stronger and well understood through classical nonlinear optics. The latter, also known as parametric fluorescence, can be explained only in the framework of a quantum theory of light. We experimentally demonstrated that, in a microring resonator, there is a simple relation between the efficiencies of these two processes that is independent of the nonlinearity and ring size. In particular, we have shown the average power generated by parametric fluorescence can be immediately estimated from a classical FWM experiment. These results suggest that classical nonlinear characterization of a photonic integrated structure can provide accurate information on its nonlinear quantum properties.
2012
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Esperti anonimi
Inglese
Internazionale
STAMPA
37
18
3807
3809
3
This work is one of the main results of the FIRB Futuro in Ricerca 2008 "Nonlinear and quantum optics in photonics nano structures" (project coordinator Daniele Bajoni, unit coordinator Marco Liscidini) and of the Alma Mater Ticinensis project " Semiconductor devices for entangled photon pair generation" (project coordinator Daniele Bajoni).
Ring Resonator; Photonics; Quantum Photonics; Nonlinear Optics; Four Wave Mixing
http://www.opticsinfobase.org/ol/abstract.cfm?uri=ol-37-18-3807
10
info:eu-repo/semantics/article
262
Azzini, Stefano; Grassani, Davide; Galli, Matteo; Andreani, Lucio; Sorel, M; Strain, Mj; Helt, Lg; Sipe, Je; Liscidini, Marco; Bajoni, Daniele...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/567651
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