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首页> 外文期刊>Applied optics >Design of a single-polarization single-mode photonic crystal fiber with a near-Gaussian mode field and wide bandwidth
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Design of a single-polarization single-mode photonic crystal fiber with a near-Gaussian mode field and wide bandwidth

机译:具有近高斯场和宽带的单偏振单模光子晶体光纤的设计

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摘要

Single-polarization single-mode (SPSM) fiber can efficiently eliminate polarization mode coupling, polarization mode dispersion, and polarization-dependent loss. Up to now, most single-polarization fibers have been designed based on form birefringence, which would result in a non-Gaussian field distribution and a small effective mode field area. In this paper, a novel structure of SPSM photonic crystal fibers based on the resonant coupling phenomena is proposed and analyzed by using a full-vector finite-element method with a second-order transparent boundary condition. From the numerical results it is confirmed that this fiber has a near-Gaussian mode field within the wavelength range from 1.46 to 2.2 (mu)m, where only one polarized mode exists effectively, and the mode field area is about 79 (mu)m~(2) at the wavelength of 1.55 (mu)m, matching that of the conventional single-mode fiber.
机译:单偏振单模(SPSM)光纤可以有效消除偏振模耦合,偏振模色散和偏振相关损耗。到目前为止,大多数单偏振光纤都是基于形状双折射设计的,这将导致非高斯场分布和较小的有效模式场面积。本文提出了一种基于共振耦合现象的SPSM光子晶体光纤新型结构,并采用具有二阶透明边界条件的全矢量有限元方法进行了分析。从数值结果证实,该光纤在1.46至2.2μm的波长范围内具有近高斯模场,其中仅有效地存在一种偏振模,并且模场面积约为79μm。 〜(2)在1.55μm的波长处,与常规单模光纤的波长匹配。

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