2009
DOI: 10.2528/pierb08121603
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Analysis of Ultra-Short Pulse Propagation in Nonlinear Optical Fiber

Abstract: Abstract-Ultra-short pulse is a promising technology for achieving ultra-high data rate transmission which is required to follow the increased demand of data transport over an optical communication system. Therefore, the propagation of such type of pulses and the effects that it may suffer during its transmission through an optical waveguide have received a great deal of attention in the recent years. Our goal in this paper is to study the propagation characteristics of that pulse in a nonlinear optical fiber.… Show more

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Cited by 18 publications
(7 citation statements)
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“…PWE is also a good numerical method for calculating photonic band gap in periodic structures. Therefore, we have analyzed and modeled the PCF structures by the FDTD and the PWE methods [26][27][28][29][30][31][32].…”
Section: Numerical Analysismentioning
confidence: 99%
“…PWE is also a good numerical method for calculating photonic band gap in periodic structures. Therefore, we have analyzed and modeled the PCF structures by the FDTD and the PWE methods [26][27][28][29][30][31][32].…”
Section: Numerical Analysismentioning
confidence: 99%
“…Уникальные характеристики таких импульсов обуславливают их широкое применение в фундаментальной науке, тех-нике и медицине [6], в том числе и в техно-логиях передачи данных [7]. Большое ко-личество работ посвящено эксперимен-тальному исследованию распространения таких импульсов в различных оптических волокнах [8] и моделированию распростра-нения фемтосекундых импульсов в различ-ных волноводах [9,10]. Однако из-за явле-ния уширения спектра традиционные подходы, описывающие распространение импульсов как в линейных, так и в нели-нейных средах, неприменимы.…”
Section: Introductionunclassified
“…Equation (1) can be solved when both sides of the equation are integrated. When using forward pumping, the pump power can be expressed as the following expression [12]:…”
Section: Modeling Analysismentioning
confidence: 99%