浏览全部资源
扫码关注微信
1.哈尔滨工业大学 可调谐(气体)激光技术国家重点实验室,黑龙江 哈尔滨 150080
2.蒙古正元有限责任公司,山东 济南 250101
3.山东正元数字城市建设有限公司,山东 烟台 264000
[ "位超杰(1997-),男,河南周口人,硕士研究生,2020年于哈尔滨工业大学获得学士学位,主要从事激窄脉宽固态激光器方面的研究。E-mail:20s021033@stu.hit.edu.cn" ]
收稿日期:2020-12-31,
修回日期:2021-02-20,
纸质出版日期:2021-06-15
移动端阅览
位超杰,闫仁鹏,李旭东等.三维成像激光雷达应用的亚纳秒激光器研究进展[J].光学精密工程,2021,29(06):1270-1280.
WEI Chao-jie,YAN Ren-peng,LI Xu-dong,et al.Research progress of sub-nanosecond lasers for 3D imaging lidar[J].Optics and Precision Engineering,2021,29(06):1270-1280.
位超杰,闫仁鹏,李旭东等.三维成像激光雷达应用的亚纳秒激光器研究进展[J].光学精密工程,2021,29(06):1270-1280. DOI: 10.37188/OPE.20212906.1270.
WEI Chao-jie,YAN Ren-peng,LI Xu-dong,et al.Research progress of sub-nanosecond lasers for 3D imaging lidar[J].Optics and Precision Engineering,2021,29(06):1270-1280. DOI: 10.37188/OPE.20212906.1270.
激光雷达具有高分辨率和测量精度、体积小和数据率高等特点,已经成为地面三维成像和大气探测的主要技术手段之一。微脉冲激光雷达技术可以实现对目标的准连续测量,有效地降低了激光雷达的体积和功耗,对于推动激光雷达在航空航天领域的应用具有重要意义。本文针对微脉冲激光雷达应用的高重复频率亚纳秒激光器进行了综述,对比和讨论了亚纳秒激光器不同产生方式的特点和发展现状,并对亚纳秒激光器的未来发展做了展望。
Due to the advantages of high resolution and accuracy, compactness and high data rate, lidar has been widely used in the 3D information acquisition and atmospheric detection. The micropulse lidar could achieve the quasi continuous detection of the target, and improve the compactness and efficiency of the lidar system, which promotes its aerospace applications. A comprehensive overview for the development and the latest achievements of micropulse lidar and the employed laser sources is given in this article. The characteristics of high repetition rate, sub-nanosecond laser produced with different techniques are compared and the development of sub-nanosecond laser in micropulse lidar is predicted.
WANG J Y , SHU R , HUANG G H , et al . Spaceborne laser rangefinder ranging sensitivity and accuracy analysis [C]. SPIE Optical Engineering+Applications. Proc SPIE 7807 , Earth Observing Systems XV, San Diego, California, USA , 2010 , 7807 : 78070Y .
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 ): 20006 .
YU ZH ZH , HOU X , ZHOU C Y . Progress and current state of space-borne laser altimetry [J]. Laser & Optoelectronics Progress , 2013 , 50 ( 2 ): 20006 . (in Chinese)
代志诚 , 谷燕 , 张秀梅 , 等 . 具有高增益的AlGaN日盲紫外雪崩光电二极管 [J]. 光学 精密工程 , 2020 , 28 ( 12 ): 2614 - 2621 .
DAI ZH CH , GU Y , ZHANG X M , et al . AlGaN solar-blind ultraviolet avalanche photodiodes with high multiplication gain [J]. Opt. Precision Eng. , 2020 , 28 ( 12 ): 2614 - 2621 . (in Chinese)
DEGNAN J J . Photon-counting multikilohertz microlaser altimeters for airborne and spaceborne topographic measurements [J]. Journal of Geodynamics , 2002 , 34 ( 3/4 ): 503 - 549 .
HU W , CONG H , HUANG W , et al . Germanium/perovskite heterostructure for high-performance and broadband photodetector from visible to infrared telecommunication band [J]. Light: Science & Applications , 2019 , 8 : 106 .
NASA . ICESAT-2 mission phases[Z/OL] . https://icesat-2.gsfc.nasa.gov/ https://icesat-2.gsfc.nasa.gov/
KALDVEE B , BRACKMANN C , ALDÉN M , et al . LII-lidar: range-resolved backward picosecond laser-induced incandescence [J]. Applied Physics B , 2014 , 115 ( 1 ): 111 - 121 .
罗远 , 贺岩 , 耿立明 , 等 . 基于光子计数技术的远程测距激光雷达 [J]. 中国激光 , 2016 , 43 ( 5 ): 0514001 .
LUO Y , HE Y , GENG L M , et al . Long-distance laser ranging lidar based on photon counting technology [J]. Chinese Journal of Lasers , 2016 , 43 ( 5 ): 0514001 . (in Chinese)
李旭东 , 梅峰 , 闫仁鹏 , 等 . 高速PLIF成像诊断应用的脉冲串激光器研究进展 [J]. 光学 精密工程 , 2019 , 27 ( 10 ): 2116 - 2126 .
LI X D , MEI F , YAN R P , et al . Review of burst-mode lasers for high-speed PLIF imaging diagnostics [J]. Opt. Precision Eng. , 2019 , 27 ( 10 ): 2116 - 2126 . (in Chinese)
ZAYHOWSKI J J , KELLEY P L . Optimization of Q-switched lasers [J]. IEEE Journal of Quantum Electronics , 1991 , 27 ( 9 ): 2220 - 2225 .
ZAYHOWSKI J J , DILL C . Coupled-cavity electro-optically Q-switched Nd∶YVO 4 microchip lasers [J]. Optics Letters , 1995 , 20 ( 7 ): 716 - 718 .
ZHANG Z L , LIU Q , GONG M L . 325 mJ and 46 ns 532 nm Q -switched Nd∶YAG laser at 500 Hz [J]. Applied Optics , 2013 , 52 ( 12 ): 2735 - 2738 .
XU L W , WU W T , LI Y Y , et al . A 6.5 ns gain-switched electro-optical Q -switched Nd∶YAG laser by 885 nm laser diode pulsed-end pumping [J]. Laser Physics Letters , 2019 , 16 ( 4 ): 045001 .
GAO J , YU X , WEI B , et al . Quasi-three-level Nd: YVO 4 laser operation at 914 nm under 879 nm diode laser pumping [J]. Laser Physics , 2010 , 20 ( 7 ): 1590 - 1593 .
SUN Z , LI Q , LEI H , et al . Sub-nanosecond pulse, single longitudinal mode Q -switched Nd∶YVO 4 laser controlled by reflecting Bragg gratings [J]. Optics & Laser Technology , 2013 , 48 : 475 - 479 .
HUANG Y T , ZHANG H B , YAN X C , et al . A high peak power and high beam quality sub-nanosecond nd∶YVO 4 laser system at 1 kHz repetition rate without SRS process [J]. Applied Sciences , 2019 , 9 ( 23 ): 5247 .
ZAYHOWSKI J J . Microchip Lasers [M]. Handbook of Solid-State Lasers. Amsterdam : Elsevier , 2013 : 359 - 402 .
ZAYHOWSKI J , WELFORD D , HARRISON J . Miniature Solid-state Lasers [M]. The Handbook of Photonics , Second Edition . Boca Raton: CRC Press , 2006 : 9-1-9 - 98 .
ZAYHOWSKI J J , WILSON A L . Pump-induced bleaching of the saturable absorber in short-pulse Nd∶YAG/Cr/sup 4/∶YAG passively Q -switched microchip lasers [J]. IEEE Journal of Quantum Electronics , 2003 , 39 ( 12 ): 1588 - 1593 .
ZAYHOWSKI J J , WILSON A L . Energy-scavenging amplifiers for miniature solid-state lasers [J]. Optics Letters , 2004 , 29 ( 11 ): 1218 - 1220 .
DEGNAN J J , MCGARRY J F . SLR2000: eye-safe and autonomous single-photoelectron satellite laser ranging at kilohertz rates [C]. Aerospace Remote Sensing ' 97 . Proc SPIE 3218, Laser Radar Ranging and Atmospheric Lidar Techniques, London , United Kingdom , 1997, 3218 : 63 - 77 .
DEGNAN J J , ZAYHOWSKI J J . microlaser performance: theory vs . experiment [C]. Proceedings of the 11th International Workshop on Laser Ranging , Deggendorf, Germany , 1998 : 20 - 25 .
AGNESI A , DALLOCCHIO P , DI MARCO C , et al . Sub-nanosecond passively Q -switched multi-kHz MOPA laser system [J]. Optics InfoBase Conference Papers , 2009 : CA5_ 3 .
MARTIAL I , BALEMBOIS F , DIDIERJEAN J , et al . High energy, high peak power (2 . 6mJ/ 5 .6MW) or high average power (20W) Nd: YAG single-crystal fiber amplifier in a sub-ns kHz system[C]. 2011 Conference on Lasers and Electro-Optics Europe and 12th European Quantum Electronics Conference (CLEO EUROPE/EQEC) . May 22-26, 2011 , Munich, Germany . IEEE , 2011: 1 .
舒嵘 , 黄庚华 , 孔伟 . 空间激光测高技术发展及展望 [J]. 红外与激光工程 , 2020 , 49 ( 11 ): 20201047 .
SHU R , HUANG G H , KONG W . Development and review of space-based laser altimetry technology [J]. Infrared and Laser Engineering , 2020 , 49 ( 11 ): 20201047 . (in Chinese)
YU A W , BETIN A , KRAINAK M A , et al . Highly efficient yb∶YAG master oscillator power amplifier laser transmitter for future space flight missions [C]. Conference of Lasers and Electro-Optics(CLEO) 2012 , 2012: AW4A. 26 .
杜鑫彪 , 陈檬 , 任俊杰 , 等 . 1 kHz高倍率亚纳秒全固态激光放大器研究 [J]. 红外与激光工程 , 2020 , 49 ( 3 ): 0305001 .
DU X B , CHEN M , REN J J , et al . Research on 1 kHz high-power sub-nanosecond all-solid-state laser amplifier [J]. Infrared and Laser Engineering , 2020 , 49 ( 3 ): 0305001 . (in Chinese)
PEARCE S , IRELAND C L M , DYER P E . Solid-state Raman laser generating <1 ns, multi-kilohertz pulses at 1096 nm [J]. Optics Communications , 2006 , 260 ( 2 ): 680 - 686 .
孙哲 , 李强 , 姜梦华 , 等 . 亚纳秒脉宽半导体泵浦电光调Q Nd: YVO 4 激光器 [J]. 光电子 激光 , 2012 , 23 ( 11 ): 2074 - 2078 .
SUN ZH , LI Q , JIANG M H , et al . Subnanosecond pulse generation from diode-pumped electro-optically Q-switched Nd: YVO 4 laser [J]. Journal of OptoelectronicsLaser , 2012 , 23 ( 11 ): 2074 - 2078 . (in Chinese)
SAWRUK N W , STEPHEN M A , LITVINOVITCH S , et al . Space qualified laser transmitter for NASA's ICESat-2 mission [C]. SPIE LASE. Proc SPIE 8599 , Solid State Lasers XXII: Technology and Devices , San Francisco , California , USA , 2013 , 8599 : 85990O .
陆俊 , 丁建永 , 贺岩 , 等 . 机载激光雷达用高重复频率亚纳秒双波长全固态激光器 [J]. 激光与光电子学进展 , 2018 , 55 ( 8 ): 082804 .
LU J , DING J Y , HE Y , et al . High repetition rate sub-nanosecond dual-wavelength solid-state laser for airborne lidar [J]. Laser & Optoelectronics Progress , 2018 , 55 ( 8 ): 082804 . (in Chinese)
ZHOU Y P , LI X D , WU W T , et al . 500 Hz, 47.1 mJ, sub-nanosecond MOPA laser system [J]. Optics & Laser Technology , 2021 , 134 : 106592 .
CHEN F , HUO Y J , HE S F , et al . Diode-pumped nanosecond pulsed laser with pulse-transmission-mode Q -switch [J]. Chinese Physics Letters , 2001 , 18 ( 2 ): 228 - 229 .
WU W T , LI X D , YAN R P , et al . Continuous-wave and pulsed 1, 066-nm Nd∶Gd 0.69 Y 0.3 TaO 4 laser directly pumped by a 879-nm laser diode [J]. Optics Express , 2018 , 26 ( 12 ): 15705 - 15717 .
WU W T , LI X D , MEI F , et al . 30 mJ, 1 kHz sub-nanosecond burst-mode Nd∶YAG laser MOPA system [J]. Optics Express , 2019 , 27 ( 25 ): 36129 - 36136 .
EWART P . A modeless, variable bandwidth, tunable laser [J]. Optics Communications , 1985 , 55 ( 2 ): 124 - 126 .
JIANG Y W , NIE M M , GUO R , et al . Pushing the limit of pulse duration in Q -switched solid-state lasers with high gain [J]. Optics & Laser Technology , 2020 , 129 : 106276 .
周寿桓 , 赵鸿 , 唐小军 . 高平均功率全固态激光器 [J]. 中国激光 , 2009 , 36 ( 7 ): 1605 - 1618 .
ZHOU S H , ZHAO H , TANG X J . High average power laser diode pumped solid-state laser [J]. Chinese Journal of Lasers , 2009 , 36 ( 7 ): 1605 - 1618 . (in Chinese)
HUBER G , KRÄNKEL C , PETERMANN K . Solid-state lasers: status and future [J]. JOSA B , 2010 , 27 ( 11 ): B93 - B105 .
党文佳 , 李哲 , 李玉婷 , 等 . 高功率连续波掺镱光纤激光器研究进展 [J]. 中国光学 , 2020 , 13 ( 4 ): 676 - 694 .
DANG W J , LI ZH , LI Y T , et al . Recent advances in high-power continuous-wave ytterbium-doped fiber lasers [J]. Chinese Optics , 2020 , 13 ( 4 ): 676 - 694 . (in Chinese)
刘伟 , 陈滔 , 戴建宁 , 等 . 全光纤化的被动式亚纳秒脉冲Yb光纤激光器研究 [J]. 光学学报 , 2011 , 31 ( 12 ): 1214003 .
LIU W , CHEN T , DAI J N , et al . All-fiberized Yb fiber laser with passively generated sub-nanosecond pulse output [J]. Acta Optica Sinica , 2011 , 31 ( 12 ): 1214003 . (in Chinese)
徐成阳 , 金亮 , 陈华龙 , 等 . 基于WS 2 可饱和吸收体的窄线宽皮秒脉冲光纤激光器 [J]. 中国激光 , 2018 , 45 ( 1 ): 0101007 .
XU C Y , JIN L , CHEN H L , et al . Narrow linewidth picosecond pulsed fiber lasers based on WS 2 saturable absorber [J]. Chinese Journal of Lasers , 2018 , 45 ( 1 ): 0101007 . (in Chinese)
CHEN X , KONG W , CHEN T , et al . High-repetition-rate, sub-nanosecond and narrow-bandwidth fiber-laser-pumped green laser for photon-counting shallow-water bathymetric Lidar [J]. Results in Physics , 2020 , 19 : 103563 .
DEGNAN J J , MCGARRY J , ZAGWODZKI T , et al . Design and performance of an airborne multikilohertz, photon-counting microlaser altimeter [C]. Int. Arch. Photogramm. Remote Sensing , 2001 , XXXIV-3/W4 , 9 .
YU A W , HARDING D J , DABNEY P W . Laser transmitter design and performance for the slope imaging multi-polarization photon-counting lidar (SIMPL) instrument [C]. SPIE LASE. Proc SPIE 9726 , Solid State Lasers XXV: Technology and Devices , San Francisco , California , USA , 2016 , 9726 : 97260J .
DEGNAN J J , COYLE D B , KAY R B . Effects of thermalization on Q -switched laser properties [J]. IEEE Journal of Quantum Electronics , 1998 , 34 ( 5 ): 887 - 899 .
康治军 , 张鸿博 , 闫晓超 , 等 . 200 Hz高重复频率SBS脉宽压缩实验研究 [J]. 中国光学 , 2018 , 11 ( 5 ): 736 - 744 .
KANG ZH J , ZHANG H B , YAN X CH , et al . 200 Hz high repetition frequency SBS pulse width compression experiment [J]. Chinese Optics , 2018 , 11 ( 5 ): 736 - 744 . (in Chinese)
王雅兰 , 王庆 . 单晶光纤放大器研究进展 [J]. 激光与光电子学进展 , 2018 , 55 ( 10 ): 100006 .
WANG Y L , WANG Q . Research progress in single-crystal fiber amplifiers [J]. Laser & Optoelectronics Progress , 2018 , 55 ( 10 ): 100006 . (in Chinese)
HE X , ZHANG B , GUO C , et al . 4 mJ rectangular- envelope GHz-adjustable burst-mode fiber-bulk hybrid laser and second-harmonic generation [J]. IEEE Photonics Journal , 2021 , 13 ( 1 ): 1 - 9 .
0
浏览量
2342
下载量
6
CSCD
关联资源
相关文章
相关作者
相关机构