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多模光纤中的波长复用

Wavelength multiplexing in multimode optical fibers.

作者信息

Tomlinson W J

出版信息

Appl Opt. 1977 Aug 1;16(8):2180-94. doi: 10.1364/AO.16.002180.

Abstract

The capacity of optical fiber transmission systems could be increased by multiplexing several signals at different wavelengths on each fiber. This paper considers various multiplex system designs that might be used with multimode fiber transmission systems. In each case, the required multiplexer size and material properties are calculated as functions of the basic parameters of the fiber system. For fiber systems of the type currently being tested, a compact (~2 mm in diameter x 1 cm long), rugged, three-channel multiplexer could be constructed using a blazed plane reflection grating and graded-refractive-index (GRIN) optics; and it appears that such devices could be produced using available materials and technology. Multiplexers using thick gratings or multilayer dielectric filters are larger, more complicated, and require materials at the very edge of available technology. Multiplexers using a multiple thick grating or hologram could be even smaller than the blazed-grating devices, but materials having the quired characteristics have not been demonstrated.

摘要

通过在每根光纤上复用不同波长的多个信号,可以提高光纤传输系统的容量。本文考虑了可用于多模光纤传输系统的各种复用系统设计。在每种情况下,所需的复用器尺寸和材料特性都是作为光纤系统基本参数的函数来计算的。对于目前正在测试的那种光纤系统,可以使用闪耀平面反射光栅和渐变折射率(GRIN)光学器件构建一个紧凑的(直径约2毫米×长1厘米)、坚固的三通道复用器;而且看起来可以使用现有材料和技术来生产这种器件。使用厚光栅或多层介质滤波器的复用器更大、更复杂,并且需要处于现有技术边缘的材料。使用多个厚光栅或全息图的复用器可能比闪耀光栅器件更小,但具有所需特性的材料尚未得到验证。

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