Qingshan Liu 1,2,3Rui Wang 1,2,3Zining Yang 1,2,3,*Jianyong Sun 1,2[ ... ]Xiaojun Xu 1,2,3
Author Affiliations
Abstract
1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha, China
2 Nanhu Laser Laboratory, National University of Defense Technology, Changsha, China
3 Hunan Provincial Key Laboratory of High Energy Laser Technology, National University of Defense Technology, Changsha, China
Diode-pumped rare gas lasers are potential candidates for high-energy and high-beam quality laser systems. Currently, most investigations are focused on metastable Ar lasers. The Kr system has the unique advantages of higher quantum efficiency and lower discharge requirements for comparison. In this paper, a diode-pumped metastable Kr laser was demonstrated for the first time. Using a repetitively pulsed discharge at a Kr/He pressure of up to approximately 1500 Torr, metastable Kr atoms of more than 1013 cm–3 were generated. Under diode pumping, the laser realized a dual-wavelength output with an average output power of approximately 100 mW and an optical conversion efficiency of approximately 10% with respect to the absorbed pump power. A kinetics study involving population distribution and evolution was conducted to analyze the laser performance.
diode pump krypton metastable rare gas laser 
High Power Laser Science and Engineering
2023, 11(6): 06000e87
Author Affiliations
Abstract
1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
2 Interdisciplinary Center for Quantum Information, National University of Defense Technology, Changsha 410073, China
Since the first laser was invented, the pursuit of high-energy lasers (HELs) has always been enthusiastic. The first revolution of HELs was pushed by the fusion of laser and aerospace in the 1960s, with the chemical rocket engines giving fresh impetus to the birth of gas flow and chemical lasers, which finally turned megawatt lasers from dream into reality. Nowadays, the development of HELs has entered the age of electricity as well as the rocket engines. The properties of current electric rocket engines are highly consistent with HELs’ goals, including electrical driving, effective heat dissipation, little medium consumption and extremely light weight and size, which inspired a second fusion of laser and aerospace and motivated the exploration for potential HELs. As an exploratory attempt, a new configuration of diode pumped metastable rare gas laser was demonstrated, with the gain generator resembling an electric rocket-engine for improved power scaling ability.
high energy laser HEL gas dynamic laser alkali laser electric thruster metastable rare gas 
Opto-Electronic Advances
2023, 6(6): 220113
Author Affiliations
Abstract
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China
Direct current pulsed discharge is a promising route for producing high-density metastable particles required for optically pumped rare gas lasers (OPRGLs). Such metastable densities are easily realized in small discharge volumes at near atmospheric pressures, but problems appear when one is trying to achieve a large volume of plasma for high-power output. In this work, we examined the volume scalability of high-density metastable argon atoms by segmented discharge configuration. Two discharge zones attached with peaking capacitors were connected parallelly by thin wires, through which the peaking capacitors were charged and of which the inductance functioned as ballasting impendence to prevent discharging in only one zone. A uniform and dense plasma with the peak value of the number densities of Ar (1s5) on the order of 1013cm-3 was readily achieved. The results demonstrated the feasibility of using segmented discharge for OPRGL development.
rare gas laser pulsed discharge plasma application 
Chinese Optics Letters
2022, 20(3): 031408
褚俊植 1,3黄珂 2,**栾昆鹏 2胡墅 1[ ... ]刘栋 1,*
作者单位
摘要
1 中国科学院大连化学物理研究所化学激光重点实验室, 辽宁 大连 116023
2 西北核技术研究所激光与物质相互作用国家重点实验室, 陕西 西安 710024
3 中国科学院大学, 北京 100049

近年来光泵浦惰性气体亚稳态激光在高能激光领域逐渐得到人们的关注。搭建了一台高压纳秒脉冲放电产生惰性气体亚稳态粒子的装置,该装置增益尺寸较长,便于后续开展激光增益和放大实验。利用窄线宽可调谐连续光源探测了该装置放电生成的Kr亚稳态(5s[3/2]2)粒子数浓度,达1.3×10 12 cm -3,该状态持续时间约为3 μs,满足后续激光体系运行条件。测量过程中出现了吸收饱和现象,给粒子数浓度拟合带来了不确定性,设计的复合拟合方法解决了这一问题。

光谱学 激光吸收光谱 氪亚稳态 脉冲辉光放电 稀有气体激光 Voigt线型 
中国激光
2021, 48(7): 0701006
作者单位
摘要
1 中国科学院 光电技术研究所, 成都 610209
2 电子科技大学 光电科学与工程学院, 成都 610054
3 中国科学院大学, 北京 100049
4 兰州理工大学 能源与动力工程学院, 兰州730050
为了提高刻蚀的均匀性, 对400mm反应离子刻蚀(RIE)腔室建立了气体流动的连续流体模型和热传递模型, 研究了反应腔室内压强、流速和温度分布。冷却板恒温285K时, 依次改变入口流量和出口压强, 分别分析了腔室内部基片晶圆附近的流速、压强、温度的分布; 依次改变极板间距离(30mm~60mm)、进气口直径(300mm~620mm)、抽气口直径(50mm~250mm), 分析了反应腔室内气流和温度分布。结果表明, 压强分布呈现出边缘低中心高的特征, 流速呈现边缘高且中心低的特征, 且在小流量时压强的均匀性较好; 压强分布的均匀性随腔室极板间距离增加而有所提高, 且随腔室气体出口面积减小与进口面积增加也有所提高; 基片晶圆上方附近处温度场大面均匀、稳定, 几乎不受入口流量波动变化的影响, 热稳定性良好。该研究对大口径RIE腔室结构设计改进及对大口径反应离子刻蚀工艺控制具有重要意义。
光学制造 反应离子刻蚀 变结构腔室 流热场分布 滑移区稀薄气体 数值模拟 optical fabrication reactive ion etching variable structure chamber flow thermal distribution rare gas of slip flow regime numerical simulationn 
激光技术
2020, 44(1): 136
作者单位
摘要
华中科技大学 武汉光电国家实验室, 武汉 430074
采用基于体布拉格光栅的窄线宽半导体激光器作为泵浦源,以电容耦合式射频激励Ar,He混合气体放电等离子体为增益介质,在双程纵向泵浦的结构下实现了连续波模式的912 nm的激光输出。
光泵浦气体激光器 稀有气体 窄线宽半导体激光器 optically pumped gas laser rare gas narrow linewidth laser diode 
强激光与粒子束
2018, 30(1): 010102
作者单位
摘要
华中科技大学 武汉光电国家实验室, 武汉 430074
利用发射光谱法测量大气压He-Ar混合气体射频容性放电中的Ar亚稳态1s5(3s23p54s[3/2]2)粒子数密度。在不同的放电功率和气体组分下测量放电等离子体中的重要参数: 气体转动温度、电子激发温度和Ar亚稳态1s5粒子数密度。结果表明: 气体温度在不同放电功率及Ar气压在5×103 Pa以内时变化不大,范围为300~350 K; 电子激发温度随着放电功率的增加而增加,并且在Ar气压为4×103 Pa时最大,在放电功率为70 W时达到0.58 eV; 1s5粒子数密度随着放电功率以及电子激发温度的增加而增加,在放电功率为70 W、Ar气压为4×103 Pa时达到1.53×109 cm-3。
光泵惰性气体亚稳态激光器 大气压He-Ar射频放电 氩亚稳态1s5粒子数密度 optically pumped metastable rare gas atoms laser atmospheric He-Ar radiofrequency discharge Ar 1s5 particle number density 
强激光与粒子束
2017, 29(5): 051002
作者单位
摘要
国防科学技术大学 光电科学与工程学院, 长沙 410073
建立了半导体泵浦亚稳态惰性气体激光器(DPRGL)速率方程模型,以Ar为例,仿真分析泵浦强度、亚稳态原子数密度以及增益介质长度对DPRGL工作性能的影响.结果表明:高泵浦强度(约kW/cm2)条件下DPRGL理论上具有大于55%的光-光效率;亚稳态原子数密度和增益介质长度对激光器性能影响具有等价性;实际中需综合优化泵浦强度、亚稳态原子数密度、增益介质长度等激光器参量以实现激光器最大的光光转换效率.
速率方程 气体激光器 亚稳态原子 惰性气体 rate equation gas laser metastable atom rare gas 
强激光与粒子束
2015, 27(6): 061017
作者单位
摘要
中国工程物理研究院 流体物理研究所, 四川 绵阳 621900
数值模拟研究了高速气流作用下激光加热金属平板温度场.流体控制方程为三维雷诺平均Navier-Stokes方程,固体控制方程为能量方程,湍流粘性系数求解使用k-ε两方程模型.采用流固耦合计算方法,使用两相流模型模拟气流对烧蚀物的剥蚀,较完整地模拟了激光辐照金属材料的物理变化过程,计算得到了不同气流速度下金属平板的温度分布以及烧蚀形貌.分别使用两相流方法和动网格方法对高速气流作用下激光对金属板的烧蚀效应进行了计算,结果表明,两相流方法与动网格方法都能较好地模拟高速气流作用下激光加热金属平板的温度响应,由于两相流方法能够较全面地模拟对流换热、熔化与凝固过程以及金属液体在气流冲刷下的动力学过程,因此能获得比动网格方法更为合理的物理图像.
流固耦合 冲刷效应 动网格 两相流 rate equation gas laser metastable atom rare gas 
强激光与粒子束
2015, 27(6): 061016
作者单位
摘要
国防科技大学光电科学与工程学院, 湖南 长沙 410073
半导体抽运亚稳态惰性气体激光器(DPRGLs)作为一种新型光抽运气体激光器,其工作原理与半导体抽运碱金属蒸气激光器(DPAL)相似,有望在继承DPAL 诸多优势的同时克服其化学反应的隐患,具有潜在的高功率定标放大能力。综述了亚稳态惰性气体激光器的基本原理和研究进展,分析了关键技术点和功率定标放大潜力,对其未来发展和应用前景进行了预测。
激光器 碱金属激光器 半导体抽运 亚稳态原子 惰性气体 
激光与光电子学进展
2015, 52(1): 010001

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