Nonlinear Pulse Reshaping With Highly Birefringent Photonic Crystal Fiber for OCDMA Receivers

We combine an erbium-doped fiber amplifier with a short segment of highly birefringent photonic crystal fiber to generate a nonlinear transfer function suitable for optical transmission systems based on optical code-division multiple-access (OCDMA). Such a functional element based on spectral broade...

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Veröffentlicht in:IEEE photonics technology letters 2010-09, Vol.22 (18), p.1367-1369
Hauptverfasser: Fsaifes, Ihsan, Cordette, Steevy, Tonello, Alessandro, Couderc, Vincent, Lepers, Catherine, Ware, Cédric, Leproux, Philippe, Buy-Lesvigne, Christelle
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container_end_page 1369
container_issue 18
container_start_page 1367
container_title IEEE photonics technology letters
container_volume 22
creator Fsaifes, Ihsan
Cordette, Steevy
Tonello, Alessandro
Couderc, Vincent
Lepers, Catherine
Ware, Cédric
Leproux, Philippe
Buy-Lesvigne, Christelle
description We combine an erbium-doped fiber amplifier with a short segment of highly birefringent photonic crystal fiber to generate a nonlinear transfer function suitable for optical transmission systems based on optical code-division multiple-access (OCDMA). Such a functional element based on spectral broadening followed by an off-center narrow optical filtering provides an effective suppression of spurious signals such as multiple-access interferences in OCDMA receivers and can reduce the pulses amplitude jitter.
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subjects Birefringence
Conferences
Engineering Sciences
Erbium-doped fiber amplifier
Fiber nonlinear optics
Fiber optics
Filtering
Microstructured fibers
Nonlinearity
optical code-division multiple-access (OCDMA)
Optical fibers
Optical filters
Optical pulses
Optical receivers
optical thresholding
Optics
Photonic
Photonic crystal fibers
Photonic crystals
Pulse amplifiers
Receivers
Spectra
Stimulated emission
Transfer functions
title Nonlinear Pulse Reshaping With Highly Birefringent Photonic Crystal Fiber for OCDMA Receivers
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