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Molybdenum Carbide Buried in D-Shaped Fibers as a Novel Saturable Absorber Device for Ultrafast Photonics Applications

机译:碳化碳化碳化物埋在D形纤维中作为一种用于超超速光子应用的新型可饱和吸收器装置

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摘要

Study of nonlinear laser-matter interactions in 2D materials has promoted development of photonics applications. As a typical MXene material, molybdenum carbide (Mo2C) has attracted much attention because of its graphene-like structure. Here, a type of D-shaped fiber (DF)-buried Mo2C saturable absorber (SA) fabricated by magnetron-sputtering deposition (MSD) and sol-gel technique is reported. The Mo2C material was buried between the bottom DF and the upper amorphous silica fabricated by sol-gel technology. Therefore, the DF-based SA effectively solves the problem of material shedding and aging, thus improving the stability and damage threshold of the fiber laser. Application of the SA in erbium-doped fiber laser and stable passive Q-switched operation with a maximum pulse energy of 430.47 nJ is realized. By adjusting the polarization state and pump power, high-power mode-locked pulses are generated with a pulse duration and output power of 199 fs and 54.13 mW, respectively. Further, bound-state soliton pulses are obtained with a pulse width of 312 fs and soliton interval of 1.26 ps for the first time based on MXene materials. Moreover, by application of the SA in ytterbiumdoped fiber lasers, a stable dissipative soliton mode-locked pulse is obtained with a pulse width of 23 ps. These results indicate that the DF-based buried Mo2C as a novel SA provides a reliable method for all-fiber and multifunctional high-power ultrafast laser.
机译:二维材料中非线性激光与物质相互作用的研究促进了光子学应用的发展。作为一种典型的MXene材料,碳化钼(Mo2C)因其石墨烯结构而备受关注。本文报道了一种采用磁控溅射沉积(MSD)和溶胶-凝胶技术制备的D型光纤(DF)埋入式Mo2C可饱和吸收体(SA)。Mo2C材料埋在底部DF和通过溶胶-凝胶技术制备的上部非晶二氧化硅之间。因此,基于DF的SA有效地解决了材料脱落和老化问题,从而提高了光纤激光器的稳定性和损伤阈值。实现了SA在掺铒光纤激光器中的应用和稳定的被动调Q,最大脉冲能量430.47NJ。通过调节偏振态和泵浦功率,产生了脉宽199fs、输出功率54.13mw的高功率锁模脉冲。此外,基于MXene材料首次获得了脉宽为312fs、孤子间隔为1.26ps的束缚态孤子脉冲。此外,通过将SA应用于掺镱光纤激光器,获得了脉宽为23ps的稳定耗散孤子锁模脉冲。这些结果表明,DF基埋置Mo2C作为一种新型SA,为全光纤多功能高功率超快激光器提供了可靠的方法。

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