作者单位
摘要
国防科技大学前沿交叉学科学院,湖南 长沙 410073

研制激光**需要综合考虑技术挑战、战场环境和作战任务等因素,推动激光**的实战应用面临众多难点,包括高能高光束质量光源难、远距离作战难、高效毁伤难、高效紧凑难、实战应用难等。结合激光**面临的困难,依据基本的物理原理,本文探讨了激光**的设计准则,提出高亮度准则、发散角匹配准则、桶中功率最高准则、高效耦合准则、平台适装准则等5条主要设计准则,为激光**研究和设计提供参考。

激光光学 激光** 系统构成 主要参数 设计准则 
中国激光
2021, 48(12): 1201001
作者单位
摘要
国防科技大学前沿交叉学科学院, 湖南 长沙 410073

在重新梳理高能激光底层物理问题的基础上,指出半导体泵浦气体激光器将是未来高能激光器的重要发展方向,讨论了半导体泵浦气体激光器的基本原理和核心要求,并以半导体泵浦碱金属蒸气激光器为例进行了详细剖析,对半导体泵浦气体激光器的前景进行了展望。

激光器 高能激光 半导体泵浦 气体激光 碱金属蒸气激光 
中国激光
2021, 48(4): 0401001
Cheng Xi 1,2,3Peng Wang 1,2,3Xiao Li 1,2,3,†Zejin Liu 1,2,3,†
Author Affiliations
Abstract
1 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha410073, China
2 State Key Laboratory of Pulsed Power Laser Technology, Changsha410073, China
3 Hunan Provincial Key Laboratory of High Energy Laser Technology, Changsha410073, China
We report on a new scheme for efficient continuous-wave (CW) mid-infrared generation using difference frequency generation (DFG) inside a periodically poled lithium niobate (PPLN)-based optical parametric oscillator (OPO). The pump sources were two CW fiber lasers fixed at 1018 nm and 1080 nm. One worked as the assisted laser to build parametric oscillation and generate an oscillating signal beam while the other worked at low power (${\leqslant}3~\text{W}$) to induce DFG between it and the signal beam. The PPLN temperature was appropriately adjusted to enable OPO and DFG to synchronously meet phase-matching conditions. Finally, both low-power 1018 nm and 1080 nm pump beams were successfully converted to $3.1~\unicode[STIX]{x03BC}\text{m}$ and $3.7~\unicode[STIX]{x03BC}\text{m}$ idler beams, respectively. The conversion efficiencies of the 1018 nm and 1080 nm pumped DFG reached 20% and 15%, respectively, while their slope efficiencies reached 19.6% and 15%. All these data were comparable to the OPOs pumped by themselves and never realized before in traditional CW DFG schemes. The results reveal that high-efficiency frequency down-conversion can be achieved with a low-power near-infrared pump source.
difference frequency generation nonlinear wave mixing optical parametric oscillator 
High Power Laser Science and Engineering
2019, 7(4): 04000e67
Pengfei Ma 1,2Hu Xiao 1,2Daren Meng 1Wei Liu 1[ ... ]Zejin Liu 1,2
Author Affiliations
Abstract
1 College of Advanced Interdisciplinary Studies , National University of Defense Technology , Changsha 410073 , China
2 Hunan Provincial Collaborative Innovation Center of High Power Fiber Laser , National University of Defense Technology , Changsha 410073 , China
An all-fiberized and narrow-bandwidth master oscillator power amplification (MOPA) system with record output power of 4 kW level and slope efficiency of 78% is demonstrated. Tandem pumping strategy is tentatively introduced into the narrow-bandwidth MOPA system for thermally induced mode instability (TMI) suppression. The stimulated Brillouin scattering (SBS) effect is balanced by simply using one-stage phase modulation technique. With different phase modulation signals, SBS limited output powers of 336 W, 1.2 kW and 3.94 kW are respectively achieved with spectral bandwidths accounting for 90% power of ${\sim}$ 0.025, 0.17 and ${\sim}$ 0.89 nm. Compared with our previous 976 nm pumping system, TMI threshold is overall boosted to be ${>}$ 5 times in which tandem pumping increases the TMI threshold of ${>}$ 3 times. The beam quality ( $M^{2}$ factor) of the output laser is well within 1.5 below the TMI threshold while it is ultimately saturated to be 1.86 with the influence of TMI at maximal output power. Except for SBS and TMI, stimulated Raman scattering (SRS) effect will be another challenge for further power scaling. In such a high power MOPA system, multi-detrimental effects (SBS, SRS and TMI) will coexist and may be mutual-coupled, which could provide a well platform for further comprehensively investigating and optimizing the high power, narrow-bandwidth fiber amplifiers.
advanced laser technology and applications design fiber laser and applications high power laser laser amplifiers laser systems modeling narrow linewidth optimization 
High Power Laser Science and Engineering
2018, 6(4): 04000e57
Author Affiliations
Abstract
College of Advanced Disciplinary Studies, National University of Defense Technology, Changsha 410073, China
Stimulated Raman scattering (SRS) effect is considered to be one of the main obstacles for power scaling in general-type fiber lasers. Different from previous techniques that aim at suppressing SRS, nonlinear fiber amplifier (NFA), which manipulates and employs the SRS for power scaling in rare-earth-doped fiber, is under intensive research in recent years. In this paper, the authors will present an all-round study on this new kind of high-power fiber amplifier. A theoretical model is proposed based on the rate equation and amplified spontaneous emission (ASE), with random noise taken into account. By numerical solving of the theoretical model, the power scaling potential, heat analysis and advantages in suppressing the undesired backscattering light are quantificationally analyzed for the first time. Then two different types of high-power NFAs are demonstrated individually. Firstly, a laser diode pumped NFA has reached kilowatt output power, and the results agree well with theoretical predictions. Secondly, a tandem-pumped NFA is proposed for the first time and validated experimentally, in which 1.5 kW output power has been achieved. The authors also briefly discuss several new issues relating to the complex nonlinear dynamics that occur in high-power NFAs, which might be interesting topics for future endeavors.
high-power fiber laser nonlinear fiber amplifier stimulated Raman scattering 
High Power Laser Science and Engineering
2018, 6(3): 03000e51
Author Affiliations
Abstract
College of Optoelectronic Science and Engineering, National University of Defense Technology, Changsha 410073, China
In this paper, we experimentally investigated the extreme frequency shift in high-power Raman fiber laser (RFL). The RFL was developed by using a pair of fiber Bragg gratings with fixed and matched central wavelength (1120 nm) combined with a piece of 31-m-long polarization maintaining (PM) passive fiber adopted as Raman gain medium. The pump source was a homemade high-power, linearly polarized (LP) wavelength-tunable master oscillator power amplifier (MOPA) source with ${\sim}25~\text{nm}$ tunable working range (1055–1080 nm). High-power and high-efficiency RFL with extreme frequency shift between the pump and Stokes light was explored. It is found that frequency shift located within 10.6 THz and 15.2 THz can ensure efficient Raman lasing, where the conversion efficiency is more than 95% of the maximal value, 71.3%. In addition, a maximum output power of 147.1 W was obtained with an optical efficiency of 71.3%, which is the highest power ever reported in LP RFLs to the best of our knowledge.
linearly polarized laser Raman fiber laser Raman gain spectrum. 
High Power Laser Science and Engineering
2018, 6(2): 02000e28
谷炎然 1,*冷进勇 1,2,3肖虎 1,2,3陈子伦 1,2,3[ ... ]刘泽金 1,2,3
作者单位
摘要
1 国防科技大学 前沿交叉学科学院, 长沙 410073
2 高能激光技术湖南省重点实验室, 长沙 410073
3 大功率光纤激光湖南省协同创新中心, 长沙 410073
光纤激光同带抽运方案具有泵浦亮度高、量子亏损小等优势, 有着巨大的功率提升潜力, 是近年来国际上的研究热点。1018 nm光纤激光可作为高功率掺镱光纤激光器的高效同带抽运源, 但是单个1018 nm光纤激光器输出功率有限, 光束合成是突破这一局限的重要方案。基于19台单模1018 nm光纤激光器和一个19×1光纤功率合束器, 搭建了一套全光纤结构激光合成系统, 实现了5 kW的1018 nm合成激光输出。
光纤激光器 光纤合束器 激光合成 fiber laser fiber combiner laser combining 
强激光与粒子束
2017, 29(12): 120101
姜曼 1,2,3马鹏飞 1,2,3周朴 1,2,3刘泽金 1,2,3
作者单位
摘要
1 国防科学技术大学光电科学与工程学院, 湖南 长沙 410073
2 湖南省大功率光纤激光协同创新中心, 湖南 长沙 410073
3 高能激光技术湖南省重点实验室, 湖南 长沙 410073
光束合成是突破单路激光功率限制、获得高功率激光输出的重要手段。以亮度为判据,对不同光束合成方法的合成效果进行理论研究,给出了激光光束合成效果的预评价方法。分析了亮度、光束质量因子和Strehl比3个描述光束质量的重要参量之间的关系,给出了亮度与Strehl比的关系式,据此得出了相干合成系统与光谱合成系统亮度的定标放大公式,并对两种系统的功率与亮度定标放大能力进行了比较。
光纤光学 光谱合成 相干合成 亮度 Strehl比 光纤激光 
光学学报
2017, 37(7): 0714001
作者单位
摘要
国防科学技术大学光电科学与工程学院,湖南 长沙 410073
激光与光电子学进展
2017, 54(7): 073601
作者单位
摘要
国防科学技术大学光电科学与工程学院, 湖南 长沙 410073
针对半导体抽运的掺镱光纤激光器功率进一步提升面临的主要问题,分析了级联抽运方案在实现更高功率输出方面的优势和不足。简要回顾了光纤级联抽运技术的发展历程,重点介绍了掺镱光纤激光级联抽运的关键技术、研究现状和最新进展。针对级联抽运面临的抽运吸收和非线性效应问题,分析了下一步的研究方案和技术路线。并对级联抽运技术有望获得的新应用进行了简要介绍。
激光器 高功率光纤激光器 级联抽运 功率提升 非线性效应 
中国激光
2017, 44(2): 0201007

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