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Influences of annealing temperature on properties of Fe^2+:ZnSe thin films deposited by electron beam evaporation and their applications to Q-switched fiber laser
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作者 Du-Xin Qing Shu-Tong Wang +5 位作者 Shou-Gui Ning Wei Zhang Xiao-Xu Chen Hong Zhang Guo-Ying Feng shou-huan zhou 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第5期282-287,共6页
Fe^2+:ZnSe thin films are prepared on sapphire substrate at room temperature by electron beam evaporation and then annealed in vacuum(about 1×10^-4 Pa)at different temperatures.The influences of thermal annealing... Fe^2+:ZnSe thin films are prepared on sapphire substrate at room temperature by electron beam evaporation and then annealed in vacuum(about 1×10^-4 Pa)at different temperatures.The influences of thermal annealing on the structural and optical properties of these films such as grain size and optical transmittance are investigated.The x-ray diffraction patterns show that the Fe2+:ZnSe thin film is preferred to be oriented along the(111)plane at different annealing temperatures.After the film is annealed,the full-width-at-half-maximum(FWHM)of the x-ray diffraction peak profile(111)of the film decreases and its crystal quality is improved.Scanning electron microscope images show that the films are more dense after being annealed.Finally,the sample is used as a saturable absorber in ZBLAN fiber laser.The annealed Fe^2+:ZnSe thin films can be used to realize stable Q-switching modulation on ZBLAN fiber laser.The results demonstrate that the Fe2+:ZnSe thin film is a promising material for generating the high-power pulses of mid-infrared Q-switched fiber lasers. 展开更多
关键词 electron beam evaporation thin film optical materials Q-SWITCHING
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可饱和吸收镜制造误差及其对飞秒激光器腔型设计的影响(英文)
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作者 Sha WANG Guo-ying FENG shou-huan zhou 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2015年第4期326-334,共9页
目的:从可饱和吸收镜(SESAM)制造误差所引起其光学特性的改变出发,提出采用飞秒激光器腔型设计的方法,避免SESAM误差对激光输出性能造成的影响。创新点:从激光器腔型设计方案出发,采用不同曲率镜,调整激光腔中激光晶体及可饱和吸收镜上... 目的:从可饱和吸收镜(SESAM)制造误差所引起其光学特性的改变出发,提出采用飞秒激光器腔型设计的方法,避免SESAM误差对激光输出性能造成的影响。创新点:从激光器腔型设计方案出发,采用不同曲率镜,调整激光腔中激光晶体及可饱和吸收镜上的光斑半径大小比值,解决SESAM制造误差对激光器输出的影响。方法:采用传递矩阵法计算SESAM半导体膜层厚度对其光学性能的影响。对于不同的SESAM设计,影响大小不同(表1)。结论:通过改变腔内曲率镜M1,M2和M3的曲率值大小以及腔的长度值,可以减弱SESAM制造误差对飞秒激光器输出的影响,实现对所有SESAM的连续锁模。 展开更多
关键词 可饱和吸收镜 飞秒激光器 制造误差 腔型设计
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