ANALYTICAL EVALUATION TECHNIQUE OF SELF-PHASE-MODULATION EFFECT ON THE PERFORMANCE OF CASCADED OPTICAL AMPLIFIER SYSTEMS

Citation
N. Kikuchi et S. Sasaki, ANALYTICAL EVALUATION TECHNIQUE OF SELF-PHASE-MODULATION EFFECT ON THE PERFORMANCE OF CASCADED OPTICAL AMPLIFIER SYSTEMS, Journal of lightwave technology, 13(5), 1995, pp. 868-878
Citations number
24
Categorie Soggetti
Optics
ISSN journal
07338724
Volume
13
Issue
5
Year of publication
1995
Pages
868 - 878
Database
ISI
SICI code
0733-8724(1995)13:5<868:AETOSE>2.0.ZU;2-4
Abstract
We propose an approximate analytical evaluation technique of Self-Phas e-Modulation (SPM) in cascaded optical amplifier systems. The effect o f SPM on optical pulse distortion is represented by the increase in th e alpha-parameter of the transmitter. The waveform distortion is appro ximated by assuming that the pulse is transmitted over a dispersive fi ber without nonlinearity. This technique greatly reduces the calculati on time, and is especially useful in designing cascaded amplifier syst ems, evaluating theoretical maximum transmission distance, and so on. Also, this technique is applicable to a wide range of parameters such as amplifier output power and dispersion, even in dispersion shifted f iber (DSF) and non-dispersion shifted fiber (NDSF). It can handle the nonuniformity of system parameters in a system, such as the variation of dispersion values along the transmission fiber, non-equal amplifier spacing, and differences in amplifier output powers. In this paper, w e derive an expression for the alpha-parameter alpha(SPM), which repre sents the magnitude of nonlinear waveform distortion, and we show the accuracy of our technique. We give three examples of applications of t his technique: 1) Derivation of theoretical maximum transmission dista nce of cascaded amplifier systems with nonnegligible SPM, 2) statistic al evaluation of transmission distance when fiber dispersion values ar e random, and 3) dispersion compensation characteristics. To our knowl edge, they are the first analytical evaluations of these applications.