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Characterization of picosecond pulse nonlinear propagation in chalcogenide As(2)S(3) fiber. | LitMetric

Characterization of picosecond pulse nonlinear propagation in chalcogenide As(2)S(3) fiber.

Appl Opt

Centre for Ultrahigh-Bandwidth Devices for Optical Systems (CUDOS), Institute for Photonicsand Optical Science (IPOS), School of Physics, University of Sydney, NSW 2006, Australia.

Published: October 2009

We characterize the nonlinear propagation of picosecond pulses in chalcogenide As(2)S(3) single-mode fiber using a pump-probe technique. The cross-phase modulation (XPM)-induced sideband broadening and stimulated Raman scattering (SRS)-induced sideband amplification are measured in order to map out the Raman gain spectrum of this glass across the C-band. We extract the Raman response function from the Raman gain spectrum and determine the power and polarization dependence of the SRS. In contrast to previous work using As(2)Se(3) fiber, we find that the As(2)S(3) fiber does not suffer from large two-photon absorption (TPA) in the wavelength range of the telecommunications band. We achieved a 20 dB peak Raman gain at a Stokes shift of 350 cm(-1) in a 205 mm length of As(2)S(3) single-mode fiber. The Raman gain coefficient is estimated to be 4.3x10(-12) m/W and the threshold pump peak power is estimated to be 16.2 W for the 205 mm As(2)S(3) fiber. We also demonstrate that we can infer the dispersion of the As(2)S(3) fiber and justify the Raman response function by comparing simulation and experimental results.

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http://dx.doi.org/10.1364/AO.48.005467DOI Listing

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