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Modal dispersion, pulse broadening and maximum transmission rate in GRIN optical fibers encompass a central dip in the core index profile

机译:GRIN光纤中的模态色散,脉冲展宽和最大传输速率涵盖了核心折射率分布的中心下降

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摘要

Intermodal and intramodal dispersions signify one of the problems in graded-index multi-mode optical fibers (GRIN) used for LAN communication systems and for sensing applications. A central index dip (depression) in the profile of core refractive-index may occur due to the CVD fabrication processes. The index dip may also be intentionally designed to broaden the fundamental mode field profile toward a plateau-like distribution, which have advantages for fiber-source connections, fiber amplifiers and self-imaging applications. Effect of core central index dip on the propagation parameters of GRIN fiber, such as intermodal dispersion, intramodal dispersion and root-mean-square broadening, is investigated. The conventional methods usually study optical signal propagation in optical fiber in terms of mode characteristics and the number of modes, but in this work multiple-beam Fizeau interferometry is proposed as an inductive but alternative methodology to afford a radial approach to determine dispersion, pulse broadening and maximum transmission rate in GRIN optical fiber having a central index dip.
机译:模态和模态色散表示用于LAN通信系统和传感应用的渐变折射率多模光纤(GRIN)中的问题之一。由于CVD制造工艺的缘故,纤芯折射率分布中的中心折射率下降(凹陷)可能发生。折射率骤降也可以有意设计成将基本模式场分布扩展到平稳状态,这对于光纤源连接,光纤放大器和自成像应用具有优势。研究了纤芯中心折射率骤降对GRIN纤维的传播参数的影响,如峰间色散,峰内色散和均方根展宽。常规方法通常根据模式特性和模式数量来研究光纤中的光信号传播,但是在这项工作中,提出了多光束费索干涉测量法,作为一种感应性方法,但它提供了一种径向方法来确定色散,脉冲展宽。具有中心折射率下降的GRIN光纤的最大传输速率。

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