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A 23-dB bismuth-doped optical fiber amplifier for a 1700-nm band

机译:用于1700 nm频段的23 dB掺铋光纤放大器

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摘要

It is now almost twenty-five years since the first Erbium-Doped Fiber Amplifier (EDFA) was demonstrated. Currently, the EDFA is one of the most important elements widely used in different kinds of fiber-optic communication systems. However, driven by a constantly increasing demand, the network traffic, growing exponentially over decades, will lead to the overload of these systems (“capacity crunch”) because the operation of the EDFA is limited to a spectral region of 1530–1610 nm. It will require a search for new technologies and, in this respect, the development of optical amplifiers for new spectral regions can be a promising approach. Most of fiber-optic amplifiers are created using rare-earth-doped materials. As a result, wide bands in shorter (1150–1530 nm) and longer wavelength (1600–1750 nm) regions with respect to the gain band of Er-doped fibers are still uncovered. Here we report on the development of a novel fiber amplifier operating in a spectral region of 1640–1770 nm pumped by commercially available laser diodes at 1550 nm. This amplifier was realized using bismuth-doped high-germania silicate fibers fabricated by MCVD technique.
机译:自从首台掺Er光纤放大器(EDFA)被展示以来,已经快25年了。当前,EDFA是广泛用于不同类型的光纤通信系统中的最重要的元素之一。但是,在需求不断增长的推动下,数十年来,网络流量呈指数增长,这将导致这些系统超载(“容量限制”),因为EDFA的运行限于1530–1610nm的光谱区域。这将需要寻找新技术,在这方面,开发用于新光谱区域的光放大器可能是一种有前途的方法。大多数光纤放大器是使用掺稀土的材料制成的。结果,相对于掺Er光纤的增益带,在较短(1150–1530 nm)和较长波长(1600–1750 nm)区域中仍未发现宽带。在这里,我们报告了一种新型光纤放大器的开发情况,该光纤放大器在1640–1770 spectralnm的光谱范围内工作,并由市售的1550 nm激光二极管泵浦。该放大器是使用通过MCVD技术制造的掺铋高锗硅酸盐纤维实现的。

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