强激光与粒子束, 2015, 27 (6): 061017, 网络出版: 2015-06-17  

半导体泵浦亚稳态惰性气体激光器理论建模与性能分析

Modeling and analysis on performance of diode pumped metastable rare gas laser
作者单位
国防科学技术大学 光电科学与工程学院, 长沙 410073
引用该论文

余光其, 杨子宁, 王红岩, 华卫红, 陆启生. 半导体泵浦亚稳态惰性气体激光器理论建模与性能分析[J]. 强激光与粒子束, 2015, 27(6): 061017.

Yu Guangqi, Yang Zining, Wang Hongyan, Hua Weihong, Lu Qisheng. Modeling and analysis on performance of diode pumped metastable rare gas laser[J]. High Power Laser and Particle Beams, 2015, 27(6): 061017.

参考文献

[1] 杨子宁,王红岩,华卫红,等.半导体泵浦铷蒸气激光器国内首次出光[J].强激光与粒子束,2011,23(9):2273-2274.(Yang Zining,Wang Hongyan,Hua Weihong,et al.Diode-pumped rubidium vapor laser.High Power Laser and Particle Beams,2011,23(9):2273-2274)

[2] Wang Hongyan,Xu Xiaojun,Yang Zining,et al.DPAL research in Changsha[C]//Proc of SPIE.2014:92510T.

[3] 徐程,谭荣清,李志永,等.半导体泵浦铷蒸气激光器出光实验[J].强激光与粒子束,2013,25(7):1657-1660.(Xu Cheng,Tan Rongqing,Li Zhiyong,et al.Experimental investigations of diode pumped rubidium vapor laser.High Power Laser and Particle Beams,2013,25(7):1657-1660)

[4] 李志永,谭荣清,黄伟,等.半导体泵浦铯蒸气实现激光出光[J].强激光与粒子束,2014,26:010102.(Li Zhiyong,Tan Rongqing,Huang Wei,et al.Diode pumped cesium vapor laser.High Power Laser and Particle Beams,2014,26:010102)

[5] 韩聚洪,王浟,蔡和,等.二极管抽运铷蒸气激光的物理特性[J].强激光与粒子束,2014,26:121008.(Han Juhong,Wang You,Cai He,et al.Physical characteristics of a laser diode pumped rubidium vapor laser.High Power Laser and Particle Beams,2014,26:121008)

[6] Yunfeng L,Bailiang P,Li C.Thermal effects in high power double diode end pumped Cs vapor lasers[J].IEEE J Quant Electron,2012,48 (4):485-489.

[7] Krupke W F.Diode pumped alkali lasers (DPALs)—A review (rev1)[J].Progress in Quantum Electronics,2012,36(1):4-28.

[8] Bogachev A V,Garanin S G,Dudov A M,et al.Diode-pumped cesium vapor laser with closed-cycle laser-active medium circulation[J].Quantum Electronics,2012,42(2):95-98.

[9] Wu S S Q,Soules T F,Page R H,et al.Hydrocarbon-free resonance transition 795-nm rubidium laser[J].Opt Lett,2007,32(16),2423-2425.

[10] Zhdanov B V,Knize R J.Diode-pumped 10 W continuous wave cesium laser[J].Opt Lett,2007,32(15):2167-2169.

[11] 谢希盈,雷訇,张翔,等.碱金属激光器问题分析与研究展望[J].应用光学,2011,32(3):582-590.(Xie Xiying,Lei Hong,Zhang Xiang,et al.Key technologies of alkali lasers and its future development.Journal of Applied Optics,2011,32(3):582-590)

[12] 杨子宁.半导体泵浦铷蒸气激光器研究[D].长沙:国防科学技术大学,2012:77-78.(Yang Zining.Study on diode pumped rubidium lasers.Changsha:National University of Defense Technology,2012:77-78)

[13] Li Z,Tan R,Huang W,et al.Quasicontinuous wave linearly polarized rubidium vapor laser pumped by a 5-bar laser diode stack[J].Optical Engineering,2014,53:116113.

[14] 于祥升,王卫民,陈兴无.缓冲气体压力对铷原子吸收特性的影响[J].光电技术应用.2012,27(3):46-49.(Yu Xiangsheng,Wang Weimin,Chen Xingwu.Influence of buffer gas pressure on rubidium atomic absorption.Electro-Optic Technology Application,2012,27(3):46-49)

[15] Han J,Heaven M C.Gain and lasing of optically pumped metastable rare gas atoms[C]//Proc of SPIE.2012:85470Z.

[16] Han J,Glebov L,Venus G,et al.Demonstration of a diode-pumped metastable Ar laser[J].Opt Lett,2013,38(24):5458-5461.

[17] Rawlins W T,Galbally-Kinney K L,Davis S J,et al.Laser excitation dynamics of argon metastables generated in atmospheric pressure flows by microwave frequency microplasma arrays[C]//Proc of SPIE.2014:896203.

[18] Demyanov A V,Kochetov I V,Mikheyev P A,et al.Kinetic study of a CW optically pumped laser with metastable rare gas atoms produced in an electric discharge[J].J Phys D:Appl Phys,2013,46:375202.

[19] Han J,Heaven M C,Hager G D,et al.Kinetics of an optically pumped metastable Ar laser[C]//Proc of SPIE.2014:896202.

[20] Hager G,Mclver J,Hostutler D,et al.A quasi-two level analytic model for end pumped alkali metal vapor laser[C]//Proc of SPIE .2008:700528.

余光其, 杨子宁, 王红岩, 华卫红, 陆启生. 半导体泵浦亚稳态惰性气体激光器理论建模与性能分析[J]. 强激光与粒子束, 2015, 27(6): 061017. Yu Guangqi, Yang Zining, Wang Hongyan, Hua Weihong, Lu Qisheng. Modeling and analysis on performance of diode pumped metastable rare gas laser[J]. High Power Laser and Particle Beams, 2015, 27(6): 061017.

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