2.7微米抗辐射掺铒单晶光纤的制备及高性能级联激光技术研究

批准号:
51872290
项目类别:
面上项目
资助金额:
60.0 万元
负责人:
孙敦陆
依托单位:
学科分类:
E0201.人工晶体与玻璃材料
结题年份:
2022
批准年份:
2018
项目状态:
已结题
项目参与者:
罗建乔、程毛杰、张会丽、韩松、方忠庆、赵绪尧、权聪、胡伦珍
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中文摘要
2.7μm掺铒GYSGG系列中红外激光晶体具有优良的抗辐照性能,在强辐射环境、医学、科研和国防等领域有重要应用,许多应用还需要晶体具有高效、高重频及高光束质量的激光性能。但通常激光晶体元件的热透镜效应以及Er3+下能级寿命较长,限制了2.7μm激光性能的进一步提高。本项目提出采用单晶光纤加强热管理,同时将能级耦合与级联激光相结合,不仅能改善下能级寿命较长对2.7μm激光输出的不利影响,而且掺Er3+浓度可大幅降低,从而进一步减小泵浦端面损伤、降低激光阈值、提高效率和重频。.通过研究熔区界面等对单晶光纤生长稳定性及光学质量的影响,不断优化生长参数,掌握生长机理和规律,获得优质单晶光纤;揭示抗辐射微观机理和提出模型;通过能级寿命、激光性能反馈优化出最佳的激活及能级耦合离子浓度、光纤直径及长度;设计优化级联激光谐振腔,实现低阈值、高效率及高重频的中红外激光,满足空间等强辐射环境下应用的需要。
英文摘要
Erbium-doped GYSGG series of mid-infrared laser crystals operated at 2.7 μm have excellent radiation resistant properties, and thus have important applications in the fields of strong radiation environment, medicine, scientific research and national defense. Many applications also require crystals to possess excellent laser performance with high efficiency, high repetition rate and high beam quality. However, both the thermal lens effect of the general laser crystal element and the long lifetime of the lower level 4I13/2 of Er3+ ions affect the improvement of 2.7 μm laser performance. In this project, we propose that the use of single crystal fiber to enhance thermal management. At the same time, the level coupling is combined with cascaded lasers, which it is not only can weaken the adverse effect to the 2.7 μm laser output because of the long level lifetime, but also the concentration of Er3+ can be decreased greatly, thereby further to reduce the damage of pumping end-face and laser threshold, improve efficiency and repetition rate.. By investigating the influence of the melting zone interface on the growth stability and optical quality of single crystal fibers, the growth parameters are constantly optimized and growth mechanism and rules are mastered, the high quality single crystal fibers are obtained. The radiation resistant micro-mechanism is revealed and the model is proposed. The concentrations of the activation and the level coupling ions, fiber diameter and length would be optimized through level lifetime and laser performance feedback. To design and optimize the cascaded laser cavity structure, and achieve mid-infrared laser with low threshold, high efficiency, high repetition rate in order to meet space radiation environment applications.
2.7μm掺铒GYSGG系列中红外激光晶体具有优良的抗辐照性能,在强辐射环境、医学、科研和国防等领域有重要应用,许多应用还需要晶体具有高效、高重频及高光束质量的激光性能。但通常激光晶体元件的热透镜效应以及Er3+自终止效应限制了2.7μm激光性能的进一步提高。本项目中,我们提出采用制备Er,Pr:GYSGG单晶光纤的方法加强增益介质的热管理性能以及采用级联激光的方法降低Er3+自终止效应。按照四年研究计划开展了单晶光纤制备、质量检测、激光性能表征及级联实验平台搭建等工作,制备了Er:YSGG、Er,Pr:GYSGG单晶光纤和1at.%Er:YSGG晶体,对单晶光纤的直径波动、传输损耗、抗辐照特性进行了研究,通过Comsol软件模拟了单晶光纤在半导体激光器端泵模式下的热分布,并采用970nmLD端面泵浦单晶光纤获得了2.7μm高光束质量和优异抗辐照特性的中红外激光输出。另外,我们研究了962nmLD端面泵浦1at.% Er:YSGG级联脉冲激光器,结果表明级联技术有助于 2.7μm激光斜效率的提升。因此,将单晶光纤的制备和级联激光的采用相结合是一种实现低阈值、高效率及高重频的中红外激光输出的有效方法,在晶体的浓度优化及光纤包层的制备等方面值得进一步深入研究。
期刊论文列表
专著列表
科研奖励列表
会议论文列表
专利列表
Spectroscopic and laser properties of Er:LuSGG crystal for high-power∼2.8 µm mid-infrared laser
用于高功率-2.8 µm 中红外激光的 Er:LuSGG 晶体的光谱和激光特性
DOI:10.1364/oe.389550
发表时间:2020
期刊:Optics Express
影响因子:3.8
作者:Xuyao Zhao;Dunlu Sun;Jianqiao Luo;Huili Zhang;Cong Quan;Lunzhen Hu;Zhiyuan Han;Kunpeng Dong;Maojie Cheng;Shaotang Yin
通讯作者:Shaotang Yin
Growth, thermal, and spectroscopic properties of Yb,Ho,Pr:LuYAG single crystal: A novel ∼2.9 μm laser material
Yb,Ho,Pr:LuYAG 单晶的生长、热学和光谱特性:一种新型 2.9μm 激光材料
DOI:10.1016/j.jlumin.2022.118872
发表时间:2022-03
期刊:Journal of Luminescence
影响因子:3.6
作者:Huili Zhang;Dunlu Sun;Jianqiao Luo;Cong Quan;Lunzhen Hu;Zhiyuan Han;Kunpeng Dong;Maojie Cheng;Yuwei Chen
通讯作者:Yuwei Chen
Influence of Cr3+ doping on the spectroscopies and laser performance of Cr,Nd:YAG crystal operated at 1.06 μm
Cr3 掺杂对 1.06 μm 下 Cr,Nd:YAG 晶体光谱和激光性能的影响
DOI:10.1117/1.oe.58.2.027116
发表时间:2019-02
期刊:Optical Engineering
影响因子:1.3
作者:Huili Zhang;Dunlu Sun;Jianqiao Luo;Zhongqing Fang;Xuyao Zhao;Cong Quan;Lunzhen Hu;Maojie Cheng;Qingli Zhang;Shaotang Yin
通讯作者:Shaotang Yin
Diode end-pumped 1.37 W Er:YSGG continuous-wave laser around 2.8-μm
二极管端泵浦 1.37 W Er:YSGG 连续波激光器 2.8-μm 左右
DOI:10.1109/lpt.2021.3078779
发表时间:2021
期刊:IEEE Photonics Technology Letters
影响因子:2.6
作者:Lunzhen Hu;Dunlu Sun;Huili Zhang;Jianqiao Luo;Cong Quan;Zhiyuan Han;Kunpeng Dong;Yuwei Chen;Maojie Cheng
通讯作者:Maojie Cheng
DOI:10.1016/j.infrared.2022.104432
发表时间:2022-11
期刊:Infrared Physics & Technology
影响因子:--
作者:Zhiyuan Han;D. Sun;Huili Zhang;Jianqiao Luo;Cong Quan;Lunzhen Hu;Kunpeng Dong;Yuwei Chen;Yang Qiao;M. Cheng
通讯作者:Zhiyuan Han;D. Sun;Huili Zhang;Jianqiao Luo;Cong Quan;Lunzhen Hu;Kunpeng Dong;Yuwei Chen;Yang Qiao;M. Cheng
2.8-3微米Yb3+单掺或Cr3+,Yb3+双掺敏化的Ho3+:YAlO3激光晶体生长及性能研究
- 批准号:51272254
- 项目类别:面上项目
- 资助金额:79.0万元
- 批准年份:2012
- 负责人:孙敦陆
- 依托单位:
新型稀土掺杂的高效抗辐射GYSGG系列中红外激光晶体的结构设计与可控制备
- 批准号:91122021
- 项目类别:重大研究计划
- 资助金额:50.0万元
- 批准年份:2011
- 负责人:孙敦陆
- 依托单位:
2.7微米高效抗辐射Yb,Er:GSGG激光晶体的生长及性能研究
- 批准号:50872135
- 项目类别:面上项目
- 资助金额:40.0万元
- 批准年份:2008
- 负责人:孙敦陆
- 依托单位:
国内基金
海外基金
