利用石墨烯作为可饱和吸收剂在EDFL腔中产生超短脉冲,用于光通信系统

Jhon A. Lopera, J. J. Granada, A. Cárdenas, J. Zapata
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引用次数: 6

摘要

石墨烯和二维材料由于其广泛的吸收光谱、超快的恢复时间和高调制深度而被用于光源设计。在这项工作中,我们提出了一种模型锁定掺铒光纤激光器(EDFL)的实验设计,该激光器使用沉积在d形光纤上的石墨烯作为可饱和吸收剂,以便在光通信的重要区域(1558.5 nm)产生超短脉冲。据我们所知,这是首个在哥伦比亚设计并经过实验验证的超短脉冲激光器。结果表明,脉冲激光器的重复频率为33.3 MHz,光谱宽度为10 nm。
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Ultrashort Pulse Generation in EDFL Cavities using Graphene as Saturable Absorber for applications in optical communications systems
Graphene and 2D materials are being used in the design of light sources due to their wide absorption spectrum, ultrafast recovery time and high modulation depth. In this work, we present a experimental design of an modelocking Erbium-Doped-Fiber-Laser (EDFL) that uses graphene deposited onto D-shaped optical fiber, acting as a saturable absorber, in order to generate ultra-short pulses in an important region for optical communications: 1558.5 nm. To best of our knowledge, this is the first ultrashort pulses laser designed an experimentally validated in Colombia. The results shows a pulsed laser with a repetition rate of 33.3 MHz and a spectral width of 10 nm.
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