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光纤激光器作为推动各领域发展的基础硬件,在轨道交通、光纤通信、新材料制造、动力电池加工、军事国防和医疗等领域都有广泛的应用价值.光纤激光器被动锁模技术的核心器件是可饱和吸收体,它对光纤激光器实现高能量、窄脉宽、大功率的激光输出起决定性作用.依托传统材料和传统结构的可饱和吸收体,由于无散热机制,光作用到材料上的光斑大小与光纤出射直径几乎相同,容易超过可饱和吸收体的损伤阈值从而造成损坏.因此,调整可饱和吸收体制备工艺和结构,对于提高可饱和吸收体的损伤阈值,实现性能优良、稳定性高的脉冲激光具有重要意义.本文综述了高损伤阈值可饱和吸收体国内外研究现状,指出了高损伤阈值可饱和吸收体可能的发展方向.  相似文献   
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Topological insulator materials, including Bi2Te3, Sb2Te3, Sb2Te3, and Bi2Se3, have attracted some attention due to their narrow band gaps, high carrier mobility, wide spectral absorption ranges and other characteristics.We report a new multi-compound topological insulator material BiSbTeSe2 that, compared with the traditional topological insulator composed of two elements, can integrate the physic...  相似文献   
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Fiber lasers with different net dispersion cavity values can produce some types of solitons, and rich nonlinear dynamics phenomena can be achieved by selecting different saturable absorbers. A new layered high-entropy van der Waals material(HEX)(Mn,Fe,Co,Ni)PS3 was selected as a saturable absorber to achieve a high-power laser output of 34 m W. In addition, the wavelength can be dynamically tuned from 1560 nm to 1531 nm with significant dual-wavelength phenomena at 460 fs pulse durati...  相似文献   
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