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Ultra-fast quantum-well saturable absorber devices and their application to all-optical regeneration of telecommunication optical signals

机译:超快速量子阱可饱和吸收器设备及其在电信光信号全光再生中的应用

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摘要

We review recent advances in the investigation of vertical cavity saturable absorber devices and their use for the all-optical regeneration of telecommunication signals in ultra-long-haul transmission systems. Such devices are polarization-insensitive and operate as fully passive nonlinear optical elements. Two approaches for obtaining fast recovery absorber materials are described, relying upon ion irradiation or upon iron doping. The vertical micro-cavity devices are designed so as to optimize the switching contrast and the operating power. Their functional behaviour as extinction ratio amplifiers has been characterized and their optimal operating conditions have been determined. The potential application of these devices to all-optical regeneration has been investigated through numerical simulations and fully demonstrated in several long-distance transmission loop experiments, with results obtained at 10, 20 and 40 Gbit/s, showing significant improvements in system haul or operational margins. A four-channel fibered module has also been fabricated, as a perspective towards the development of wavelength division multiplexing (WDM) saturable absorber modules.
机译:我们回顾了垂直腔可饱和吸收器设备及其在超长距离传输系统中电信信号的全光再生中的研究进展。这种设备是偏振不敏感的,并且可以作为完全无源的非线性光学元件工作。描述了两种用于获得快速恢复吸收剂材料的方法,它们依赖于离子辐射或铁掺杂。垂直微腔设备的设计旨在优化开关对比度和工作功率。表征了它们作为消光比放大器的功能行为,并确定了它们的最佳工作条件。已通过数值模拟研究了这些设备在全光再生中的潜在应用,并在几个长距离传输环路实验中得到了充分证明,其结果分别为10、20和40 Gbit / s,显示出系统传输或运行方面的显着改善利润。还制作了四通道光纤模块,作为对波分复用(WDM)饱和吸收器模块发展的一个展望。

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