材料科学
镱
光纤激光器
激光器
杰纳斯
钽
光电子学
二硫化钼
光学
纤维
脉搏(音乐)
Q开关
兴奋剂
波长
纳米技术
复合材料
物理
探测器
冶金
作者
Huiran Yang,Chenhao Lu,Wangdi Zhang,Xupeng Li,Mengting Qi,Dongdong Han,Pu Wang,Yiqing Xie,Lu Li,Feng Zhao
标识
DOI:10.1021/acsami.4c13636
摘要
Janus transition metal disulfide (TMD) monolayers have two distinct carbon surfaces that break the inherent ground external mirror symmetry. When compared to traditional TMD materials, Janus TMDs not only inherit the advantages of traditional TMDs but also have new characteristics that are different from those of traditional TMDs. This paper describes the development of a stable passive Q-switched ytterbium-doped fiber laser (YDFL) with operating wavelengths of 1032.9 and 1030.6 nm using two saturated absorbing materials: tantalum sulfide (TaSSe) and tantalum disulfide (TaS2). Our experimental results show that TaSSe, as a saturable absorber (SA), can generate a higher single-pulse energy and withstand higher pump power, and the single maximum pulse energy can reach 108.81 nJ. In the TaS2-SA Q-switched YDFL, increasing pump power from 180 to 330 mW results in a minimum pulse width of 3.18 μs. The maximum pulse energy is 50.68 nJ. This study showed that Janus TMD TaSSe has superior optical properties compared to traditional TMD TaS2, indicating that it has great potential for use in fiber laser development.
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