Realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime

Realization of wavelength conversion based on second-order femtosecond dark solitons with hyperbolic secant pulse is presented. This is achieved by introducing localized dispersion perturbation along the optical fiber. We demonstrate that an initial 30 fs second-order pulse decays to similar sub-pul...

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Main Authors: Esmaeilian Marnani, A., Abas, Ahmad Fauzi, Moravvej Farshi, M. K., Ebnali Heidari, M.
Format: Article
Language:English
English
Published: Taylor & Francis 2010
Online Access:http://psasir.upm.edu.my/id/eprint/11716/1/Realization%20of%20wavelength%20conversion%20with%20hyperbolic%20secant%20femtosecond%20pulse%20in%20normal%20dispersion%20regime.pdf
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author Esmaeilian Marnani, A.
Abas, Ahmad Fauzi
Moravvej Farshi, M. K.
Ebnali Heidari, M.
author_facet Esmaeilian Marnani, A.
Abas, Ahmad Fauzi
Moravvej Farshi, M. K.
Ebnali Heidari, M.
author_sort Esmaeilian Marnani, A.
collection UPM
description Realization of wavelength conversion based on second-order femtosecond dark solitons with hyperbolic secant pulse is presented. This is achieved by introducing localized dispersion perturbation along the optical fiber. We demonstrate that an initial 30 fs second-order pulse decays to similar sub-pulses by applying perturbation using a step increment of β2 from 6.3 to 15.75 ps2 km-1. This shows that the realization of a 12 channel wavelength converter for femtosecond pulses is possible. Recent research shows the possibility of realizing wavelength conversion generated from picosecond solitons neglecting nonlinear effects. However, employing the same method for femtosecond pulses fails due to the manifestation of nonlinear effects. In this paper, pulse deformation under different levels of perturbation was tested, and appropriate perturbation leading to similar sub-pulses is achieved.
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spelling upm.eprints-117162015-09-14T00:34:38Z http://psasir.upm.edu.my/id/eprint/11716/ Realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime Esmaeilian Marnani, A. Abas, Ahmad Fauzi Moravvej Farshi, M. K. Ebnali Heidari, M. Realization of wavelength conversion based on second-order femtosecond dark solitons with hyperbolic secant pulse is presented. This is achieved by introducing localized dispersion perturbation along the optical fiber. We demonstrate that an initial 30 fs second-order pulse decays to similar sub-pulses by applying perturbation using a step increment of β2 from 6.3 to 15.75 ps2 km-1. This shows that the realization of a 12 channel wavelength converter for femtosecond pulses is possible. Recent research shows the possibility of realizing wavelength conversion generated from picosecond solitons neglecting nonlinear effects. However, employing the same method for femtosecond pulses fails due to the manifestation of nonlinear effects. In this paper, pulse deformation under different levels of perturbation was tested, and appropriate perturbation leading to similar sub-pulses is achieved. Taylor & Francis 2010 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/11716/1/Realization%20of%20wavelength%20conversion%20with%20hyperbolic%20secant%20femtosecond%20pulse%20in%20normal%20dispersion%20regime.pdf Esmaeilian Marnani, A. and Abas, Ahmad Fauzi and Moravvej Farshi, M. K. and Ebnali Heidari, M. (2010) Realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime. Journal of Modern Optics, 57 (8). pp. 601-606. ISSN 0950-0340 10.1080/09500340.2010.483293 English
spellingShingle Esmaeilian Marnani, A.
Abas, Ahmad Fauzi
Moravvej Farshi, M. K.
Ebnali Heidari, M.
Realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime
title Realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime
title_full Realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime
title_fullStr Realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime
title_full_unstemmed Realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime
title_short Realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime
title_sort realization of wavelength conversion with hyperbolic secant femtosecond pulse in normal dispersion regime
url http://psasir.upm.edu.my/id/eprint/11716/1/Realization%20of%20wavelength%20conversion%20with%20hyperbolic%20secant%20femtosecond%20pulse%20in%20normal%20dispersion%20regime.pdf
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