首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Study of bending loss and mode field diameter in depressed inner core triple-clad single-mode optical fibers
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Study of bending loss and mode field diameter in depressed inner core triple-clad single-mode optical fibers

机译:凹陷内芯三包层单模光纤的弯曲损耗和模场直径的研究

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In this paper, the bending loss and the mode field diameter (MFD) of the R-type depressed inner core triple clad single-mode opticalfibers are investigated. The effects of the optical and geometrical parameters on the bending loss and the MFD are examined in these fibers. The simulation results indicate that with increasing of the core radius (a), which is desired from manufacturing point of view, the bending loss and MFD coefficients are decreased. Consequently, the large core radius can be used to optimize the bending loss in the foregoing fibers. In the meantime, simulation outcomes show that the DELTA and Q have considerable impact on the bending loss in the RI and RII fibers, respectively. The MFD and bending loss is decreased with increasing of DELTA, but the case is inversed for Q. Based on the presented simulations, it is found out that the bending loss strongly depends on the distribution profile of the electric field in the cladding region for a given MFD. In other words, the field amplitude and damping rate in the cladding region determine the fiber bending loss.
机译:本文研究了R型凹陷内芯三层包层单模光纤的弯曲损耗和模场直径(MFD)。在这些光纤中检查了光学和几何参数对弯曲损耗和MFD的影响。仿真结果表明,随着铁心半径(a)的增加(从制造的角度来看是期望的),弯曲损耗和MFD系数会降低。因此,大的芯半径可用于优化前述纤维的弯曲损耗。同时,仿真结果表明,DELTA和Q分别对RI和RII纤维的弯曲损耗有很大影响。 MFD和弯曲损耗随DELTA的增加而减小,但情况与Q相反。根据给出的仿真,发现弯曲损耗在很大程度上取决于包层区域中电场在包层中的分布曲线。给定MFD。换句话说,包层区域中的场振幅和阻尼率决定了光纤的弯曲损耗。

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