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Tunable passively Q-switched erbium -doped fiber laser with Chitosan/MoS2 saturable absorber

机译:用壳聚糖/ MOS2可饱和吸收器可调谐被动Q开关铒 - 拆卸光纤激光器

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摘要

Chitosan, an organic polymer derived from the outer skeletons of crustacean and in the cell wall of fungi is explored as polymer host to develop thin film saturable absorber (SA). As a polymer, Chitosan shows high thermal stability as well as significant transmission characteristics. The highly transparent polymer serves as a good host for SA materials, and a composite Chitosan/MoS2 thin film is demonstrated to successfully generate stable Q-switched lasing output at operating wavelength of 1561.5 nm. At maximum pump power of 280.5 mW, the generated pulse exhibits maximum pulse repetition rate and pulse energy of 79.4 kHz and 43.69 nJ respectively as well as minimum pulse width of 1.02 mu s. The overall efficiency of the laser cavity with the Chitosan/MoS2 thin film SA is approximately 0.93%. These results reflect the outstanding performance of Chitosan/MoS2 SA as compared to other MoS2 SA prepared using mechanical exfoliation and optical deposition technique. Moreover, the Chitosan polymer is shown to be a highly potential host in the SA fabrication process due to its promising performance which is comparable to PVA. (C) 2018 Elsevier Ltd. All rights reserved.
机译:壳聚糖,衍生自甲壳类动物的外骨架和真菌细胞壁的有机聚合物作为聚合物宿主,以开发薄膜可饱和吸收器(SA)。作为聚合物,壳聚糖显示出高的热稳定性以及显着的传动特性。高透明的聚合物用作SA材料的良好宿主,并证明了复合壳聚糖/ MOS2薄膜以在1561.5nm的工作波长的操作波长成功地产生稳定的Q开关激光输出。在最大泵浦功率为280.5 mW,产生的脉冲分别显示出79.4 kHz和43.69个NJ的最大脉冲重复率和脉冲能量,以及最小脉冲宽度为1.02μm。用壳聚糖/ MOS2薄膜SA的激光腔的总效率约为0.93%。与使用机械剥离和光学沉积技术制备的其他MOS2 SA相比,这些结果反映了壳聚糖/ MOS2AS的出色性能。此外,由于其具有与PVA的有希望的性能,壳聚糖聚合物显示在SA制造过程中的高潜能宿主。 (c)2018年elestvier有限公司保留所有权利。

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