We experimentally and theoretically investigate the process of seeded intermodal four-wave mixing in a graded index multimode fiber, pumped in the normal dispersion regime. By using a fiber with a 100-μm core diameter, we generate a parametric sideband in the C-band (1530–1565 nm), hence allowing the use of an erbium-based laser to seed the mixing process. To limit nonlinear coupling between the pump and the seed to low-order fiber modes, the waist diameter of the pump beam is properly adjusted. We observe that the superimposed seed stimulates the generation of new spectral sidebands. A detailed characterization of the spectral and spatial properties of these sidebands shows good agreement with theoretical predictions from the phase-matching conditions. Interestingly, we demonstrate that both the second- and fourth-order dispersions must be included in the phase-matching conditions to get better agreement with experimental measurements. Furthermore, temporal measurements performed with a fast photodiode reveal the generation of multiple pulse structures.

Seeded intermodal four-wave mixing in a highly multimode fiber

KRUPA, Katarzyna;Modotto, Daniele;Wabnitz, Stefan;
2018-01-01

Abstract

We experimentally and theoretically investigate the process of seeded intermodal four-wave mixing in a graded index multimode fiber, pumped in the normal dispersion regime. By using a fiber with a 100-μm core diameter, we generate a parametric sideband in the C-band (1530–1565 nm), hence allowing the use of an erbium-based laser to seed the mixing process. To limit nonlinear coupling between the pump and the seed to low-order fiber modes, the waist diameter of the pump beam is properly adjusted. We observe that the superimposed seed stimulates the generation of new spectral sidebands. A detailed characterization of the spectral and spatial properties of these sidebands shows good agreement with theoretical predictions from the phase-matching conditions. Interestingly, we demonstrate that both the second- and fourth-order dispersions must be included in the phase-matching conditions to get better agreement with experimental measurements. Furthermore, temporal measurements performed with a fast photodiode reveal the generation of multiple pulse structures.
2018
2017
UE
PE2_9 Optics, non-linear optics and nano-optics
PE7_2 Electrical and electronic engineering: semiconductors, components, systems
Esperti anonimi
Inglese
Internazionale
ELETTRONICO
35
2
295
301
7
Nonlinear optics, four wave mixing.
MIUR (compresi PRIN FIRB,FISR)
https://www.osapublishing.org/view_article.cfm?gotourl=https%3A%2F%2Fwww%2Eosapublishing%2Eorg%2FDirectPDFAccess%2F0223842B%2DC0F7%2D0C25%2D1CB0258CB814A5F9%5F380780%2Fjosab%2D35%2D2%2D295%2Epdf%3Fda%3D1%26id%3D380780%26seq%3D0%26mobile%3Dno&org=Elsevier%20Inc
   H2020
8
info:eu-repo/semantics/article
262
Bendahmane, Abdelkrim; Krupa, Katarzyna; Tonello, Alessandro; Modotto, Daniele; Sylvestre, Thibaut; Couderc, Vincent; Wabnitz, Stefan; Millot, Guy...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/11379/501440
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