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Optica Publishing Group
  • Journal of Lightwave Technology
  • Vol. 23,
  • Issue 1,
  • pp. 172-
  • (2005)

Compensation of Intrachannel Nonlinearities in 40-Gb/s Pseudolinear Systems Using Optical-Phase Conjugation

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Abstract

In this paper intrachannel nonlinearities in a return-to-zero differential-phase-shift-keyed (RZ-DPSK) 40-Gb/s 32x100-km system are compensated in the absence of signal power symmetry using a single LiNbO3 conjugator and results in two decades of improvement in bit-error rate (BER). The reduction of transmission impairments enables the reach of the system to be extended from 5200 to 6400 km with a measured BER = 5 x 10^-4. This paper also presents a first-order perturbation analysis that describes the effects of optical-phase conjugation and dispersion mapping on the optical field of pulses.

© 2005 IEEE

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