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Journal ArticleDOI

Interaction of polarization mode dispersion and nonlinearity in optical fiber transmission systems

TLDR
In this paper, the Manakov-PMD equation was derived using multiple-length-scale techniques and it was shown that the scalar nonlinear Schro/spl uml/dinger equation is valid when the signal is initially in a single polarization state.
Abstract
Aspects of the interaction of the Kerr nonlinearity and polarization mode dispersion (PMD) are reviewed. The basic equation that governs this interaction on the length scale of interest in optical fiber communications systems is the Manakov-PMD equation. This equation is derived using multiple-length-scale techniques. The focus of the derivation is the elucidation of common misunderstandings and pitfalls rather than mathematical rigor. It is shown that the scalar nonlinear Schro/spl uml/dinger equation is valid when PMD is absent and the signal is initially in a single polarization state. Two examples are then presented that illustrate the complexity of the interaction between nonlinearity and PMD. The first example considers the interaction of a nonlinearly induced chirp with PMD. As the power increases, one can obtain an improved eye opening relative to the case when PMD is absent. The second example considers the effect of nonlinear polarization rotation in a wavelength-division-multiplexed system. When nonlinear polarization rotation is important, the principal states of polarization become time dependent and PMD compensation becomes ineffective. This problem can be mitigated through the use of line codes.

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Citations
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Journal ArticleDOI

Nonlinear wave equation for wavelength/polarization multiplexed signals in fiber transmission

Kyo Inoue, +1 more
- 16 May 2023 - 
TL;DR: In this paper , a nonlinear wave equation for WDM/PDM signal transmission is presented, which describes the signal behavior in systems where the polarization states of each WDM light are fully random and independent.
Journal ArticleDOI

Interaction of polarization mode dispersion and cross-phase modulation in wavelength division multiplexed optical fiber systems

TL;DR: In this article, the probability density function of the random angle between the SOP of pump and probe was derived for a two-channel IM-DD WDM system at 10 Gb/s.
Proceedings ArticleDOI

PMD monitoring of polarization division multiplex transmission system using RF tone harmonics

TL;DR: In this article, the effect of first order polarization-mode dispersion (PMD) on the regenerated RF tones by comparing their relative amplitude slopes has been investigated using fiber Brag grating (FBG) optical notch filter in the tap-line.
Book ChapterDOI

Nonlinear Polarization Scattering in Polarization-Division-Multiplexed Coherent Communication Systems

TL;DR: Polarization-division-multiplexing, which transmits two channels with orthogonal states of polarization at an identical wavelength, is almost considered a standard option for today’s optical coherent systems.
References
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Book

Nonlinear Fiber Optics

TL;DR: The field of nonlinear fiber optics has advanced enough that a whole book was devoted to it as discussed by the authors, which has been translated into Chinese, Japanese, and Russian languages, attesting to the worldwide activity in the field.
Book

Advanced mathematical methods for scientists and engineers

TL;DR: A self-contained presentation of the methods of asymptotics and perturbation theory, methods useful for obtaining approximate analytical solutions to differential and difference equations is given in this paper.
Book

Solitons and the Inverse Scattering Transform

TL;DR: In this paper, the authors developed the theory of the inverse scattering transform (IST) for ocean wave evolution, which can be solved exactly by the soliton solution of the Korteweg-deVries equation.
Book

Advanced Mathematical Methods for Scientists and Engineers I: Asymptotic Methods and Perturbation Theory

TL;DR: Eventually, you will enormously discover a supplementary experience and execution by Spending more cash by spending more cash.
Journal ArticleDOI

Study of Optical Effects Due to an Induced Polarization Third Order in the Electric Field Strength

TL;DR: In this paper, the results of a series of experiments in which a giant pulsed ruby laser is used to study several different nonlinear optical effects arising from an induced optical polarization third order in the electric field strength are presented.
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