Chinese Journal of Lasers, Volume. 41, Issue 9, 902010(2014)
Frequency Stability Based on Molecular Absorption Spectrum of Single-Frequency Pulse Laser
[1] [1] Zhou Bingkun, Gao Yizhi, Chen Tirong. Laser Principles[M]. Beijing: National Defence Industry Press, 2000. 230-235.
[2] [2] Sasano Y, Browell E V. Light scattering characteristics of various aerosol types derived from multiple wavelength lidar observations[J]. Appl Opt, 1989, 28(9): 1670-1679.
[3] [3] Hargrove L, Fork R, Pollack M. Locking of He-Ne laser modes induced by synchronous intracavity modulation[J]. Appl Phys Lett, 2004, 5(1): 4-5.
[4] [4] Stover H, Steier W. Locking of laser oscillators by light injection[J]. Appl Phys Lett, 1966, 8(4): 91-93.
[5] [5] Danielmeyer H. Stabilized efficient single-frequency Nd:YAG laser[J]. IEEE Journal of Quantum Electronics, 1970, 6(2): 101-104.
[6] [6] Wallard A. Frequency stabilization of the helium-neon laser by saturated absorption in iodine vapour[J]. Journal of Physics E: Scientific Instruments, 1972, 5(9): 926-930.
[7] [7] Kruzhalov S, Parfenov V A, Pakhomov L, et al.. Frequency stabilization of a Nd:YAG laser by means of (I-127) 2 absorption lines[J]. Techn Phys Lett, 1985, 11: 111-112.
[8] [8] Arie A, Schiller S, Gustafson E K, et al.. Absolute frequency stabilization of diode-laser-pumped Nd:YAG lasers to hyperfine transitions in molecular iodine[J]. Opt Lett, 1992, 17(17): 1204-1206.
[9] [9] Arie A, Byer R L. Frequency stabilization of the 1064-nm Nd:YAG lasers to Doppler-broadened lines of iodine[J]. Appl Opt, 1993, 32(36): 7382-7386.
[10] [10] Zhou J, Yu T, Bi J, et al.. Diode pumped injection seeded Nd:YAG laser[J]. Chin Opt Lett, 2006, 4(5): 292-293.
[11] [11] Zhang Junxuan, Li Feng, Bi Decang, et al.. Tunable single longitudinal mode Nd:YAG green laser[J]. Chinese J Lasers, 2013, 40(9): 0902009.
[12] [12] Liu Z, Wu S, Liu B. Seed injection and frequency-locked Nd:YAG laser for direct detection wind lidar[J]. Opt & Laser Technol, 2007, 39(3): 541-545.
[13] [13] Wu S, Liu Z, Liu B. Automatic laser frequency stabilization to iodine absorption line[J]. Opt & Lasers in Eng, 2007, 45(4): 530-536.
[14] [14] Wu S, Liu Z, Liu B. Dual-wavelength laser frequency locking for the direct-detect wind lidar[J]. J Modern Optics, 2006, 53(3): 333-341.
[15] [15] Liu Qiang, Zhang Junhai, Zeng Xianjin, et al.. Continuously tunable and frequency-stabilized laser[J]. Laser & Optoelectronics Progress, 2012, 49(10): 127-131.
[16] [16] Bian Zhenglan, Huang Chongde, Gao Min, et al.. Research on control technique for pound-drever-hall laser frequency stabilizing system[J]. Chinese J Lasers, 2012, 39(3): 0302001.
[17] [17] Chanin M, Garnier A, Hauchecorne A, et al.. A Doppler lidar for measuring winds in the middle atmosphere[J]. Geophysical Research Letters, 1989, 16(11): 1273-1276.
[18] [18] Wu Songhua. Key Technologies of High Spectral Resolution Wind Measurement by Laser with High Stability [D]. Qingdao: Ocean University of China, 2001. 27-38.
[19] [19] Gerstenkorn S, Luc P. Atlas du spectre d′absorption de la Molecule d′Iode 14800-20000 cm-1[J]. Paris: Editions du Centre National de la Recherche Scientifique (CNRS), 1978. 1.
Get Citation
Copy Citation Text
Shen Hongchao, Wu Songhua, Qin Shengguang, Liu Jintao, Zhang Kailin, Liu Bingyi. Frequency Stability Based on Molecular Absorption Spectrum of Single-Frequency Pulse Laser[J]. Chinese Journal of Lasers, 2014, 41(9): 902010
Category: Laser physics
Received: Mar. 19, 2014
Accepted: --
Published Online: Aug. 12, 2014
The Author Email: Hongchao Shen (joyshen@foxmail.com)