中国激光, 2019, 46 (1): 0101004, 网络出版: 2019-01-27   

可低温工作的窄脉冲宽温激光器 下载: 879次

Narrow Pulse Width lasers Operating over Wide Range of Low Temperature
作者单位
1 中国科学院上海光学精密机械研究所空间激光信息传输与探测技术重点实验室, 上海 201800
2 中国科学院大学, 北京 100049
引用该论文

白家荣, 刘源, 钟朝阳, 孟洁, 施君杰, 王明建, 孟俊清, 侯霞, 陈卫标. 可低温工作的窄脉冲宽温激光器[J]. 中国激光, 2019, 46(1): 0101004.

Bai Jiarong, Liu Yuan, Zhong Chaoyang, Meng Jie, Shi Junjie, Wang Mingjian, Meng Junqing, Hou Xia, Chen Weibiao. Narrow Pulse Width lasers Operating over Wide Range of Low Temperature[J]. Chinese Journal of Lasers, 2019, 46(1): 0101004.

参考文献

[1] 于真真, 侯霞, 周翠芸. 星载激光测高技术发展现状[J]. 激光与光电子学进展, 2013, 50(2): 020006.

    Yu Z Z, Hou X, Zhou C Y. Progress and current state of space-borne laser altimetry[J]. Laser & Optoelectronics Progress, 2013, 50(2): 020006.

[2] Goldberg L, Nettleton J, Schilling B, et al. Compact laser sources for laser designation, ranging and active imaging[J]. Proceedings of SPIE, 2007, 6552: 65520G.

[3] McCarthy J C, Young Y E, Day R C, et al. . Athermal, lightweight, diode-pumped, 1-micron transmitter[J]. Proceedings of SPIE, 2005, 5707: 237-243.

[4] TsunekaneM, TairaT. Compact and wide temperature acceptance of VCSEL-pumped micro-laser for laser ignition[C]∥Advanced Solid-State Lasers 2013, October 27-November 1, 2013, Paris, France. Washington: OSA, 2013: ATu3A. 58.

[5] CrépyB, Le NevéM, MontagneJ, et al. Efficient, diode temperature insensitive Nd∶YAG hybrid longitudinal/transversal-pumped zig-zag slab laser: delta concept[C]∥Advanced Solid-State Lasers, 2002, February 3-6, 2002, Québec City, Canada. Washington: OSA, 2002: TuC4.

[6] 鲁绍文, 孟洁, 赵学强, 等. 高峰值功率窄脉宽宽温Nd∶GdVO4激光器[J]. 中国激光, 2018, 45(4): 0401009.

    Lu S W, Meng J, Zhao X Q, et al. Temperature insensitive Nd∶GdVO4 laser with high peak power and narrow pulse width[J]. Chinese Journal of Lasers, 2018, 45(4): 0401009.

[7] Lee S T, Silver M, Barron A, et al. A compact laser target designator[J]. Proceedings of SPIE, 2016, 9834: 98340Q.

[8] 魏大康. 温度不敏感激光技术及单频双脉冲混合MOPA系统的研究[D]. 北京: 中国科学院大学, 2016.

    Wei DK. Research on temperature insensitive laser technology and single-frequency double-pulse hybrid MOPA system[D]. Beijing: University of Chinese Academy of Sciences, 2016.

[9] 陈思露, 张鑫, 蒋静, 等. VCSEL侧面泵浦的全固态激光器[J]. 中国激光, 2018, 45(10): 1001001.

    Chen S L, Zhang X, Jiang J, et al. VCSEL side-pumped all solid-state laser[J]. Chinese Journal of Lasers, 2018, 45(10): 1001001.

[10] 杨海龙. 大能量空间全固态板条激光器的技术研究[D]. 北京: 中国科学院大学, 2016: 18- 21.

    Yang HL. Study of high energy all-solid-state slab lasers for space applications[D]. Beijing: University of Chinese Academy of Sciences, 2016: 18- 21.

[11] 李玉娇, 宗楠, 彭钦军. 垂直腔面发射半导体激光器的特性及其研究现状[J]. 激光与光电子学进展, 2018, 55(5): 050006.

    Li Y J, Zong N, Peng Q J. Characteristics and progress of vertical-cavity surface-emitting semiconductor lasers[J]. Laser & Optoelectronics Progress, 2018, 55(5): 050006.

[12] 马秀华. 传导冷却空间全固态激光器热效应及其关键技术研究[D]. 上海: 中国科学院上海光学精密机械研究所, 2008: 15- 20.

    Ma XH. Studies of techniques and thermal effect for spaceborne conductively cooling all solid-state laser[D]. Shanghai: Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences, 2008: 15- 20.

[13] 尹升茂, 吴颖, 孙年春. 温度对Cr 4+∶YAG被动调Q激光器坪区影响 [J]. 光学与光电技术, 2010, 8(1): 31-34.

    Yin S M, Wu Y, Sun N C. Influence of temperature on Cr 4+∶YAG passive Q-switched laser plateau region [J]. Optics & Optoelectronic Technology, 2010, 8(1): 31-34.

[14] WalterKoechner. 固体激光工程[M]. 孙文, 江泽文, 程国祥, 译. 北京: 科学出版社, 2002: 410- 414.

    KoechnerW. Solid-state laser engineering[M]. Sun W, Jiang Z W, Cheng G X, Transl. Beijing: Science Press, 2002: 410- 414.

[15] Degnan J J. Theory of the optimally coupled Q-switched laser[J]. IEEE Journal of Quantum Electronics, 1989, 25(2): 214-220.

[16] Degnan J J. Optimization of passively Q-switched lasers[J]. IEEE Journal of Quantum Electronics, 1995, 31(11): 1890-1901.

[17] 赵圣之, 陈磊, 张路, 等. Nd∶YAG晶体1.064 μm受激发射截面随温度变化特性研究[J]. 光子学报, 2004, 33(2): 133-135.

    Zhao S Z, Chen L, Zhang L, et al. Study on temperature dependence of the 1.064 μm stimulated emission cross section of Nd∶YAG crysyal[J]. Acta Photonica Sinica, 2004, 33(2): 133-135.

白家荣, 刘源, 钟朝阳, 孟洁, 施君杰, 王明建, 孟俊清, 侯霞, 陈卫标. 可低温工作的窄脉冲宽温激光器[J]. 中国激光, 2019, 46(1): 0101004. Bai Jiarong, Liu Yuan, Zhong Chaoyang, Meng Jie, Shi Junjie, Wang Mingjian, Meng Junqing, Hou Xia, Chen Weibiao. Narrow Pulse Width lasers Operating over Wide Range of Low Temperature[J]. Chinese Journal of Lasers, 2019, 46(1): 0101004.

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