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Passively Q-Switched Er-Doped Fiber Laser Based on Bentonite Clay (Al2H2O6Si) Saturable Absorber

机译:基于膨润土 (Al2H2O6Si) 可饱和吸收剂的被动调 Q 掺铒光纤激光器

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摘要

This paper presents the investigations toward the direct use of bentonite clay (Al2H2O6Si) nanoparticles to act like a saturable absorber (SA) for the Q-switched pulse operation of an erbium-doped fiber laser (EDFL). The measured results reveal that with the incorporation of bentonite clay nanopowder as a SA, an EDFL is realized with a Q-switching mechanism starting at a pump power of 30.8 mW, and a Q-switched emission wavelength was noticed at 1562.94 nm at 142 mW pump power. With an increased pump from 30.8 mW to 278.96 mW, the temporal pulse parameters including minimum pulse duration and maximum pulse repetition rates were reported as 2.6 µs and 103.6 kHz, respectively. The highest peak power, signal-to-noise ratio, output power and pulse energy were noticed to be 16.56 mW, 51 dB, 4.6 mW, and 47 nJ, respectively, at a highest pump power of 278.96 mW. This study highlights the significance of bentonite clay (Al2H2O6Si) nanoparticles as a potential candidate for a saturable absorber for achieving nonlinear photonics applications.
机译:本文介绍了直接使用膨润土 (Al2H2O6Si) 纳米颗粒作为可饱和吸收器 (SA) 进行掺铒光纤激光器 (EDFL) 的 Q 开关脉冲操作的研究。测量结果表明,通过将膨润土纳米粉末掺入 SA 中,EDFL 以 30.8 mW 的泵浦功率开始,通过 Q 开关机制实现,并且在 1562.94 nm 处观察到 142 mW 泵浦功率的 Q 开关发射波长。当泵浦从 30.8 mW 增加到 278.96 mW 时,包括最小脉冲持续时间和最大脉冲重复率在内的时间脉冲参数分别报告为 2.6 μs 和 103.6 kHz。在最高泵浦功率为 278.96 mW 时,最高峰值功率、信噪比、输出功率和脉冲能量分别为 16.56 mW、51 dB、4.6 mW 和 47 nJ。本研究强调了膨润土 (Al2H2O6Si) 纳米颗粒作为可实现非线性光子学应用的可饱和吸收剂的潜在候选者的重要性。

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