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Choosing a Better Delay Line Medium between Single-Mode and Multi-Mode Optical Fibers: the Effect of Bending

机译:在单模和多模光纤之间选择更好的延迟线介质:弯曲的影响

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摘要

Optical fiber cables are materials whose core is made of silica and other materials such as chalcogenide glasses; they transmit a digital signal via light pulses through an extremely thin strand of glass. The light propagates and is being guided by the core which is surrounded by the cladding. Light travels in the optical fiber in the form of total internal reflection in the core of the fibers. The flexibility, low tensile strength, low signal loss, high bandwidth and other characteristics of optical fibers favors it for use as a delay medium in many applications. Another favorable characteristic of optical fiber delay lines is are their relative insensitivities to environmental effects and electromagnetic interferences. The immunity of optical fibers to interferences and their less weight added advantages to it for use as delay medium. Single-mode and multi-mode are the two most popular types of optical fibers. Single-mode fibers have good propagation and delay properties with a minimal loss that allows the signal to propagate in a large distance with insignificant distortion or attenuation. The percentage of power transmission of single-mode fibers is found to be higher than that of the multi-mode fibers. It is, therefore, a preferred type for use as a delay line. In this paper, relative studies of the two optical fibers modes, and the results of power input/output measurement of the two modes are presented with a view to coming up with a better type for use as a delay medium.
机译:光纤电缆是指其芯由二氧化硅和硫属化物玻璃等其他材料制成的材料。它们通过光脉冲通过极细的一束玻璃传输数字信号。光传播并由被包层围绕的纤芯引导。光以全内反射的形式在光纤的芯中传播。光纤的柔韧性,低拉伸强度,低信号损耗,高带宽和其他特性使它在许多应用中用作延迟介质。光纤延迟线的另一个有利特性是它们对环境影响和电磁干扰相对不敏感。光纤对干扰的抗扰性和较轻的重量为用作延迟介质增加了优势。单模和多模是两种最流行的光纤类型。单模光纤具有良好的传播和延迟特性,并具有最小的损耗,该损耗允许信号以很长的距离传播而无明显失真或衰减。发现单模光纤的功率传输百分比高于多模光纤的功率传输百分比。因此,它是用作延迟线的首选类型。本文介绍了两种光纤模式的相关研究,以及两种模式的功率输入/输出测量结果,以期提出一种更好的类型用作延迟介质。

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