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Integration of gigahertz-bandwidth semiconductor devices inside microstructured optical fibres

机译:千兆赫带宽半导体器件在微结构光纤中的集成

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摘要

The prospect of an all-fibre optical communications network in which light can be generated, modulated and detected within the fibre itself ~(1-11) without the need for discrete optoelectronic devices is an appealing one. However, to become a reality, this approach requires the incorporation of optoelectronic materials and functionalities into silica fibres to create a new breed of semiconductor-fibre hybrid devices for performing various tasks. Here, we report the integration of precisely doped semiconductor materials and high-quality rectifying semiconductor junctions into microstructured optical fibres, enabling high-speed, in-fibre functionalities such as photodetection at telecommunications wavelengths. These semiconductor-fibre hybrid devices exhibit a bandwidth of up to 3 GHz and seamless coupling to standard single-mode optical fibres.
机译:一种全光纤光通信网络的前景很吸引人,其中光可以在光纤本身(1-11)内生成,调制和检测,而无需分立的光电设备。然而,要成为现实,这种方法需要将光电子材料和功能集成到二氧化硅纤维中,以创建用于执行各种任务的新型半导体纤维混合器件。在这里,我们报告了将精确掺杂的半导体材料和高质量的整流半导体结集成到微结构化光纤中的功能,从而实现了高速光纤内功能,例如在电信波长下进行光检测。这些半导体光纤混合设备具有高达3 GHz的带宽,并且可以无缝耦合至标准单模光纤。

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