Cross-phase-modulation-instability band gap in a birefringence-engineered photonic-crystal fiber - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Physical Review A Année : 2016

Cross-phase-modulation-instability band gap in a birefringence-engineered photonic-crystal fiber

Résumé

We report the cancellation of the cross-phase-modulation-instability (XPMI) gain over a large spectral window (which we term the XPMI band gap) in a highly birefringent photonic-crystal fiber with zero group birefringence. The XPMI ceases to occur when single-frequency pumping of orthogonally polarized modes takes place in such a spectral band gap whose frequency bandwidth depends on the pump power itself. The suppression of XPMI sidebands is confirmed experimentally when Raman scattering remains negligible. At high powers the Raman Stokes wave, generated by the pump, implies novel dual-frequency pump configurations with large group-velocity mismatch, thus leading to another type of Raman-induced XPMI sidebands. The experimental results are in good agreement with analytical phase-matching calculations and numerical simulations.
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Dates et versions

hal-02964282 , version 1 (12-10-2020)

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B. Kibler, F Amrani, P. Morin, Alexandre Kudlinski. Cross-phase-modulation-instability band gap in a birefringence-engineered photonic-crystal fiber. Physical Review A, 2016, 93, ⟨10.1103/PhysRevA.93.013857⟩. ⟨hal-02964282⟩
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