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Novel venus photonic crystal fiber structure with low loss over S+C+L+U wavelength bands and large negative dispersion

机译:新型金星光子晶体光纤结构,在S + C + L + U波段上损耗低,负色散大

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In the era of modern optical communication, a new types of fiber known as Photonic Crystal Fiber (PCF) has entered as an emerging research area with its unique and splendid optical properties and design flexibility. PCF structures are composed of an arrangement of holes where different position or diameter of these holes is liable for different optical properties. In the past study, researchers have proposed several regular or irregular structures with different shapes like Hexagonal, Octagonal, Circular, Spiral, Honeycomb etc. due to its enormous design flexibility. In this research, a novel PCF structure of Venus geometry is proposed and optical properties like confinement loss and dispersion are extracted. For design and simulation purpose of the proposed structure, COMSOL Multiphysics software is used. For better light confinement in any cladding holes, defect is created using perturb material and low confinement loss is obtained within S+C+L+U wavelength bands. Variations in cladding holes made the proposed fiber to exhibit large negative dispersion within the wavelength range 1.5pm to 1.7pm This structure would be a promising candidate for long distance secure data transmission, Wavelength Division Multiplexing (WDM), ass Dispersion Compensating Fiber (DCF) and other telecommunication applications.
机译:在现代光通信时代,一种称为光子晶体光纤(PCF)的新型光纤以其独特而出色的光学性能和设计灵活性已进入新兴的研究领域。 PCF结构由孔的布置组成,其中这些孔的不同位置或直径对不同的光学特性负责。在过去的研究中,由于其巨大的设计灵活性,研究人员提出了几种具有不同形状的规则或不规则结构,例如六边形,八边形,圆形,螺旋形,蜂窝状等。在这项研究中,提出了一种新颖的维纳斯几何形状的PCF结构,并提取了光学特性,如限制损耗和色散。为了设计和仿真所提出结构的目的,使用了COMSOL Multiphysics软件。为了更好地将光限制在任何包层孔中,使用扰动材料会产生缺陷,并且在S + C + L + U波段内获得低的限制损耗。包层孔的变化使所提出的光纤在1.5pm至1.7pm的波长范围内表现出较大的负色散。该结构将是长距离安全数据传输,波分复用(WDM)和色散补偿光纤(DCF)的有希望的候选者和其他电信应用。

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