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Cobalt oxide nanocubes thin film as saturable absorber for generating Q-switched fiber lasers at 1 and 1.5 μm in ring cavity configuration

机译:钴氧化物纳米立方体薄膜作为可饱和吸收体,用于在环形腔结构中产生1和1.5μm的调Q光纤激光器

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摘要

We experimentally demonstrate Q-switched fiber lasers based on Ytterbium-doped fiber laser (YDFL) and Erbium-doped fiber laser (EDFL) cavity using cobalt oxide (Co3O4) nanocubes film as a saturable absorber (SA) to operate at 1043.64 nm and 1560.4 nm respectively. This material is embedded into polyethylene oxide (PEO) film to obtain a high nonlinear optical response that can be used for SA application. The Co3O4 nanocubes film was fabricated by a simple processing technique and it has a modulation depth of 4% and saturation intensity of 56 MW/cm(2). By incorporating the Co3O4 nanocubes SA into the YDFL cavity, a stable Q-switched pulse train was generated with repetition rate increasing from 60.3 to 86.66 KHz, by increasing the pump power from 144.4 to 165.4 mW. At the pump power of 147.9 mW the pulse width and pulse energy are 4 mu s and 154 nJ respectively. The EDFL generates a stable Q-switched pulses with repetition rate of 119.7 KHz, pulse width of 2.4 mu s and pulse energy of 6 nJ at maximum pump power of 141 mW. This results propose that cobalt oxide could be a promising broadband SA for all fiber lasers wavelengths at 1 and 1.5 mu m.
机译:我们实验证明了基于掺Y光纤激光器(YDFL)和掺b光纤激光器(EDFL)腔的调Q光纤激光器,使用氧化钴(Co3O4)纳米立方薄膜作为可饱和吸收剂(SA),在1043.64 nm和1560.4下工作nm分别。将此材料嵌入到聚环氧乙烷(PEO)膜中,以获得可用于SA应用的高非线性光学响应。 Co3O4纳米立方体薄膜是通过简单的加工技术制成的,其调制深度为4%,饱和强度为56 MW / cm(2)。通过将Co3O4纳米立方SA掺入YDFL腔中,通过将泵浦功率从144.4 mW增加到164.4 mW,产生了稳定的Q开关脉冲序列,其重复频率从60.3增加到86.66 KHz。在147.9 mW的泵浦功率下,脉冲宽度和脉冲能量分别为4μs和154 nJ。 EDFL产生稳定的Q开关脉冲,其最大泵浦功率为141 mW,重复频率为119.7 KHz,脉冲宽度为2.4μs,脉冲能量为6 nJ。该结果表明,对于所有波长为1和1.5μm的光纤激光器,氧化钴都有望成为有希望的宽带SA。

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