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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Design and analysis of broadband single-mode photonic crystal fiber for transmission windows of the telecom wavelengths
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Design and analysis of broadband single-mode photonic crystal fiber for transmission windows of the telecom wavelengths

机译:宽带单模光子晶体纤维纤维的设计与分析电信波长的透射窗

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To analyse the convenient use of photonic crystal fiber in the communication windows, a broadband single-mode photonic crystal fiber is proposed based on index-matching resonant coupling by using the full vector finite-element method. The novel microstructured design has been achieved for a wavelength range of 1.3 mu m-1.6-mu m. Thus it provides a wide operational bandwidth of 300 nm. This bandwidth covers all the transmission windows of fiber-optic communication except that of 'first window'. The higher order mode resonant coupling losses of the proposed fiber are good enough within this wavelength range to maintain the single mode operation. The mode field area for the proposed fiber in straight and as well as bent state is enough such that the fiber can reduce the optical intensities, which makes the fiber to be useful in high power fiber lasers and the amplifier applications. The proposed fiber exhibits a very small fundamental mode loss below 10(-3) dB/m both in the straight and bent state. Moreover, the broadband design which covers the most widely used second and third communication windows of wavelengths around 1310 nm and 1550 nm respectively, will draw the attention of the manufacturer in the fiber optic communication. (C) 2017 Elsevier GmbH. All rights reserved.
机译:为了分析通信窗口中光子晶体光纤的方便,基于使用全矢量有限元方法,基于索引匹配谐振耦合提出了一种宽带单模光子晶体光纤。已经实现了新颖的微观结构设计,对于1.3μm-1.6-mu m的波长范围。因此,它提供了300nm的宽操作带宽。除了“第一窗口”之外,这种带宽涵盖了除了光纤通信的所有传输窗口。在该波长范围内,所提出的光纤的高阶模式的谐振耦合损耗足够好,以保持单模操作。直线和弯曲状态的所提出的光纤的模式场区域足够,使得光纤可以减少光强度,这使得光纤在高功率光纤激光器和放大器应用中有用。所提出的纤维在直线和弯曲状态下表现出低于10(-3)dB / m以下的非常小的基本模式损耗。此外,宽带设计分别覆盖了最广泛使用的第二和第三通信窗口,分别为1310纳米和1550nm的波长,将引起制造商在光纤通信中的注意力。 (c)2017年Elsevier GmbH。版权所有。

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