4 December 2013 Intrachannel cross-phase modulation-induced phase shift in high-speed dispersion-managed optical fiber transmission system
Nitu Syed, Mohammad Faisal
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Abstract
We investigate the intrachannel cross-phase modulation (IXPM)-induced phase shift in optical return-to-zero pulse propagating in a periodically dispersion-managed long-haul optical fiber transmission line. Necessary dynamical equations for various pulse parameters have been derived using variational analysis to estimate the phase shift. These equations are solved by the Runge–Kutta method. The analytical result is verified by numerical simulation based on split-step Fourier method. We therefore explore the effects of various parameters, such as transmission distance, input power, duty cycle, dispersion map strength, and residual dispersion, on phase shift for a 40  Gb/s single-channel transmission system. We also check the impact of variation of bit rate on phase shift. We find that IXPM-induced phase shift can be mitigated by proper adjustment of dispersion management and different pulse parameters like duty cycle, dispersion map strength, and peak power.
© 2013 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2013/$25.00 © 2013 SPIE
Nitu Syed and Mohammad Faisal "Intrachannel cross-phase modulation-induced phase shift in high-speed dispersion-managed optical fiber transmission system," Optical Engineering 52(12), 126101 (4 December 2013). https://doi.org/10.1117/1.OE.52.12.126101
Published: 4 December 2013
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Cited by 1 scholarly publication.
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KEYWORDS
Phase shifts

Optical fibers

Modulation

Phase shift keying

Complex systems

Picosecond phenomena

Nonlinear optics

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