Chin. Phys. Lett.  2011, Vol. 28 Issue (4): 044207    DOI: 10.1088/0256-307X/28/4/044207
FUNDAMENTAL AREAS OF PHENOMENOLOGY(INCLUDING APPLICATIONS) |
Coupling Frequency Band of the In-Phase Locked Gain Waveguide Array Lasers
SHA Peng-Fei1, XIN Jian-Guo1**, FANG Li-Ping1, LIU Zheng-Fan1, ZHOU Ying1, YU Song-Lin2, WEN Jian-Guo2
1School of Optoelectronics, Beijing Institute of Technology, Beijing 100081
2North China Research Institute of Electro-optics (NCRIEO), Beijing 100015
Cite this article:   
SHA Peng-Fei, XIN Jian-Guo, FANG Li-Ping et al  2011 Chin. Phys. Lett. 28 044207
Download: PDF(611KB)  
Export: BibTeX | EndNote | Reference Manager | ProCite | RefWorks
Abstract A coupling frequency band of an in-phase locked sliced gain waveguide array laser is experimentally investigated. The experimental data show that for an in-phase locked single peak intensity distribution output without side lobes of the sliced gain waveguide array laser, there exists a coupling frequency band and the coupling frequency band increases as the transmissivity of the laser output coupler decreases.
Keywords: 42.55.Lt      42.60.Da     
Received: 18 October 2010      Published: 29 March 2011
PACS:  42.55.Lt (Gas lasers including excimer and metal-vapor lasers)  
  42.60.Da (Resonators, cavities, amplifiers, arrays, and rings)  
TRENDMD:   
URL:  
https://cpl.iphy.ac.cn/10.1088/0256-307X/28/4/044207       OR      https://cpl.iphy.ac.cn/Y2011/V28/I4/044207
Service
E-mail this article
E-mail Alert
RSS
Articles by authors
SHA Peng-Fei
XIN Jian-Guo
FANG Li-Ping
LIU Zheng-Fan
ZHOU Ying
YU Song-Lin
WEN Jian-Guo
[1] Hornby A M, Baker H J, Colley A D and Hall D R 1993 Appl. Phys. Lett. 63 2591
[2] Newman L A, Hart R A, Kennedy J T, Cantor A J and Demaria A J 1986 Appl. Phys. Lett. 48 1701
[3] Zhong Y H, Su N and Xin J G 2007 Opt. Eng. 46 054201
[4] Sha P F, Xin J G, Fang L P, Liu Z F, Zhou Y, Zhang H L, Yu S L and Wen J G 2010 Opt. Lett. 35 2329
[5] Abramski K M, Baker H J, Colley A D and Hall D R 1992 Appl. Phys. Lett. 60 2469
[6] Degnan J J and Hall D R 1973 IEEE J. Quantum Electron. 9 901
Related articles from Frontiers Journals
[1] ZHOU Ren-Lai, ZHAO Jie, YUANG-Chi, CHEN Zhao-Yu, JU You-Lun, WANG Yue-Zhu. All-Fiber Gain-Switched Thulium-Doped Fiber Laser Pumped by 1.558μm Laser[J]. Chin. Phys. Lett., 2012, 29(6): 044207
[2] LIU Qin,LIU Jian-Li,JIAO Yue-Chun,FENG Jin-Xia,ZHANG Kuan-Shou**. A Stable 22-W Low-Noise Continuous-Wave Single-Frequency Nd:YVO4 Laser at 1.06 µm Directly Pumped by a Laser Diode[J]. Chin. Phys. Lett., 2012, 29(5): 044207
[3] SU Zhou-Ping**,JI Zhi-Cheng,ZHU Zhuo-Wei,QUE Li-Zhi,ZHU Yun. Phase Locking of Laser Diode Array by Using an Off-Axis External Talbot Cavity[J]. Chin. Phys. Lett., 2012, 29(5): 044207
[4] LI Guo-Fu,**,YU Hai-Jun,DUO Li-Ping,JIN Yu-Qi,WANG Jian,SANG Feng-Ting,WANG De-Zhen. Pulsed Chemical Oxygen Iodine Lasers Excited by Pulse Gas Discharge with the Assistance of Surface Sliding Discharge Pre-ionization[J]. Chin. Phys. Lett., 2012, 29(5): 044207
[5] MIAO Liang**,ZUO Du-Luo,CHENG Zu-Hai. A Terahertz Wavemeter Based on a Fabry–Perot Interferometer Composed of Two Identical Ge Etalons[J]. Chin. Phys. Lett., 2012, 29(5): 044207
[6] ZHOU Liang,DUAN Kai-Liang**. Phases in a General Chaotic Three-Coupled-Laser Array[J]. Chin. Phys. Lett., 2012, 29(4): 044207
[7] DU Ming-Di,SUN Jun-Qiang**,CHENG Wen-Long. THz Output Improvement in a Photomixer with a Resonant-Cavity-Enhanced Structure[J]. Chin. Phys. Lett., 2012, 29(4): 044207
[8] LIU Hou-Kang,XUE Yu-Hao,LI Zhen,HE Bing**,ZHOU Jun**,DING Ya-Qian,JIAO Meng-Li,LIU Chi,QI Yun-Feng,WEI Yun-Rong,DONG Jing-Xing,LOU Qi-Hong. The Improved Power of the Central Lobe in the Beam Combination and High Power Output[J]. Chin. Phys. Lett., 2012, 29(4): 044207
[9] WU Wen-Han,HUANG Xi,YU Yu**,ZHANG Xin-Liang. RZ-DQPSK Signal Amplitude Regeneration Using a Semiconductor Optical Amplifier[J]. Chin. Phys. Lett., 2012, 29(4): 044207
[10] ZHENG Yao-Hui**,WANG Ya-Jun,PENG Kun-Chi. A High-Power Single-Frequency 540 nm Laser Obtained by Intracavity Frequency Doubling of an Nd:YAP Laser[J]. Chin. Phys. Lett., 2012, 29(4): 044207
[11] CHEN Yan-Zhong, LIU Wen-Bin, BO Yong**, JIANG Ben-Xue, XU Jian, KOU Hua-Min, XU Yi-Ting, PAN Yu-Bai, XU Jia-Lin, GUO Ya-Ding, YANG Feng-Tu, PENG Qin-Jun, CUI Da-Fu, JIANG Dong-Liang, XU Zu-Yan . A 526 W Diode-Pumped Nd:YAG Ceramic Slab Laser[J]. Chin. Phys. Lett., 2011, 28(9): 044207
[12] LI Xiao**, XIAO Hu, DONG Xiao-Lin, MA Yan-Xing, XU Xiao-Jun** . Coherent Beam Combining of Two Slab Laser Amplifiers and Second-Harmonic Phase Locking Based on a Multi-Dithering Technique[J]. Chin. Phys. Lett., 2011, 28(9): 044207
[13] YU Huai-Yong, **, ZHANG Chun-Xi, FENG Li-Shuang, HONG Ling-Fei, WANG Jun-Jie, . Optical Noise Analysis in Dual-Resonator Structural Micro-Optic Gyro[J]. Chin. Phys. Lett., 2011, 28(8): 044207
[14] ZHUANG Wei, CHEN Jing-Biao** . Feasibility of Extreme Ultraviolet Active Optical Clock[J]. Chin. Phys. Lett., 2011, 28(8): 044207
[15] RAO Zhi-Ming, WANG Xin-Bing**, LU Yan-Zhao, ZUO Du-Luo, WU Tao . Two Schemes for Generating Efficient Terahertz Waves in Nonlinear Optical Crystals with a Mid-Infrared CO2 Laser[J]. Chin. Phys. Lett., 2011, 28(7): 044207
Viewed
Full text


Abstract