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Mesoporous carbon nanospheres deposited onto D-shaped fibers for femtosecond pulse generation

机译:沉积在D形纤维上的中孔碳纳米球,用于飞秒脉冲产生

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We demonstrate nonlinear optical modulation by combining mesoporous carbon nanospheres (MCNs) and D-shaped fibers (DFs). The MCNs are prepared by the silica-assisted strategy and the DFs are fabricated through a precision wheel polishing method. When the MCNs are deposited onto the DF as the saturable absorbers (SAs), the SAs possess broadband linear absorption and nonlinear saturable absorption properties. As the DF-MCNs SA is integrated into the laser cavities, ultrafast lasers at 1.56 and 2 μm were realized with minimal pulse duration down to a few hundreds of femtoseconds. Compared with the film and microfiber-based MCNs-SAs, the DF-MCNs SAs exhibit greater robustness and stronger evanescent field, and are more effective at generating femtosecond pulses. Our results verify that DF-MCNs as a kind of cost-effective and easily-prepared SA would be of great importance for stable and high-power femtosecond fiber lasers.
机译:通过组合介孔碳纳米球(MCN)和D形纤维(DFS)来证明非线性光学调制。通过二氧化硅辅助策略制备MCN,通过精密轮抛光方法制造DF。当MCN沉积到DF上作为可饱和吸收剂(SAS)上时,SAS具有宽带线性吸收和非线性可饱和吸收性能。当DF-MCNS SA集成到激光腔中时,以1.56和2μm的超快激光器实现,以最小的脉冲持续时间降至几百个飞秒。与薄膜和超细纤维的MCNS-SA相比,DF-MCNS SAS表现出更大的稳健性和更强的渐变场,并且在产生飞秒脉冲时更有效。我们的结果验证了DF-MCN作为一种成本效益和易于准备的SA将非常重要,对稳定和高功率的飞秒纤维激光器非常重要。

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