The impact of a high differential group delay section on the output state of polarization of propagating light

V. Musara, W. T. Ireeta, L. Wu, A. Leitch
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Abstract

Research to date has shown that high differential group delay (HiDGD) sections along an optical fiber network link are the major contributors to PMD. PMD has deleterious effects on propagating optical signals. In this paper, we show the effect a HiDGD section has on the output state of polarization (SOP) of propagating light. Experimental results in this paper show a reduction in the range of the output SOP spread with an increase in the DGD of the HiDGD section to a given asymptote (a minimum) i.e. when HiDGD ≥ 35ps. However, the output SOP spread and its asymptote solely depends on the location of the HiDGD section along the fiber link length. A small output SOP spread over the entire wavelength scan covers a few polarization states on the Poincaré sphere and vice versa for a large output SOP spread. The small output SOP spread over the entire wavelength range (50 nm in steps of 0.3 nm for this study) is an indicator that the polarization capabilities of optical telecommunication signals are restricted to minute SOPs.
高差分群延迟段对传播光偏振输出状态的影响
迄今为止的研究表明,沿光纤网络链路的高差分群延迟(HiDGD)部分是PMD的主要贡献者。PMD对光信号的传播有不利影响。在本文中,我们展示了一个HiDGD截面对传播光的偏振输出状态(SOP)的影响。本文的实验结果表明,当HiDGD截面的DGD增加到给定的渐近线(最小值)时,即当HiDGD≥35ps时,输出SOP扩展的范围会减小。然而,输出的SOP扩展及其渐近线仅取决于HiDGD部分沿光纤链路长度的位置。一个小的输出SOP分布在整个波长扫描中,覆盖了庞卡卡尔球上的几个偏振态,反之亦然。在整个波长范围内的小输出SOP(本研究为0.3 nm步长50 nm)表明光通信信号的极化能力仅限于微小的SOP。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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