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Development progress of Fe2+:ZnSe lasers
F. Xu; Q.-K. Pan; F. Chen; K. Zhang; D.-Y. Yu; Y. He and J.-J. Sun
2021
发表期刊Chinese Optics
ISSN20951531
卷号14期号:3页码:458-469
摘要Mid-infrared lasers with emission spectrums located in the 3~5 m atmospheric window have a wide range of possible applications in medical treatment, industrial processing, atmospheric remote sensing, space communication, infrared countermeasures and other fields. Transition Metal (TM) doped ~ group sulfide crystals can be used as the gain medium to achieve mid-infrared laser output. Among them, Fe2 +:ZnSe lasers are advantageous for their high conversion efficiency, their wide tunable range in the mid-infrared band and their compact structure. They are one of the most effective ways of achieving a short pulse with high power and high energy in the mid-infrared band. With the development of material technology in recent years, Fe2 +:ZnSe lasers have begun developing rapidly and have become a heavily researched topic. This paper reviews the development of a TM2+:~ laser represented by a Fe2 +:ZnSe laser. The preparation methods of a Fe2 +:ZnSe gain medium are introduced and analyzed. The pump sources and factors affecting the performance of Fe2 +:ZnSe lasers are discussed. The output characteristics of the Fe2 +:ZnSe laser are reviewed. The latest development of Fe2 +:ZnSe lasers in room temperature and ultrashort pulse directions is summarized and prospected. The possible future development direction of Fe2 +:ZnSe lasers is discussed. Copyright 2021 Chinese Optics. All rights reserved.
DOI10.37188/CO.2020-0180
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被引频次:5[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/65173
专题中国科学院长春光学精密机械与物理研究所
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F. Xu,Q.-K. Pan,F. Chen,et al. Development progress of Fe2+:ZnSe lasers[J]. Chinese Optics,2021,14(3):458-469.
APA F. Xu,Q.-K. Pan,F. Chen,K. Zhang,D.-Y. Yu,&Y. He and J.-J. Sun.(2021).Development progress of Fe2+:ZnSe lasers.Chinese Optics,14(3),458-469.
MLA F. Xu,et al."Development progress of Fe2+:ZnSe lasers".Chinese Optics 14.3(2021):458-469.
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