Chinese Journal of Lasers, Volume. 34, Issue 8, 1027(2007)
Rapidly Tuned TEA CO2 Laser by a Scanning Mirror
[2] [2] A. R. Bahrampour, A. A. Askari. Fourier-wavelet regularized deconvolution (ForWaRD) for lidar systems based on TEA-CO2 laser [J]. Opt. Commun., 2006, 257:97~111
[3] [3] Mohammad A. Rob, Jerald R. Izatt. Intermodal tuning behavior of an etalon-tuned three-mirror TEA CO2 laser [J]. IEEE J. Quantum Electron., 1992, 28(1):56~59
[4] [4] Yanchen Qu, Deming Ren, Xiaoyong Hu et al.. Rapidly tuning miniature transversely excited atmospheric-pressure CO2 laser [J]. Appl. Opt., 2002, 41(24):5025~5029
[5] [5] A. I. Karapuzikov, A. N. Malov, I. V. Sherstov. Tunable TEA CO2 laser for long-range DIAL lidar [J]. Infrared Physics & Technology, 2000, 41:77~85
[7] [7] K. Simth, R. M. Thomson. Computer Modeling of Gas Laser [M]. New York: Plenum Press, 1978. 25~156
[9] [9] M. Soukieh, B. Abduh Ghani, M. Hammadi. Mathematical modeling of CO2 TEA laser [J]. Optics & Laser Technology, 1998, 30:451~457
[11] [11] H. Daneshvar-Hosseini, D. L. Begley, H. R. Heidary et al.. A microprocessor-controlled laser grating system for laser tuning [J]. Optics & Laser Technology, 1982, 6:137~142
[12] [12] F. R. Faxvog, H. W. Mocker. Rapidly tunable CO2 TEA laser [J]. Appl. Opt., 1982, 21(22):3986~3987
[13] [13] A. Crocker, R. M. Jenkins, M. Johnson. A frequency agile, sealed-off CO2 TEA laser [J]. J. Phys. E:Sci. Instrum., 1985, 18:133~135
[14] [14] Jay Fox, L. Jeffrey Ahl. High speed tuning mechanism for CO2 lidar systems [J]. Appl. Opt., 1986, 25(21):3830~3834
Get Citation
Copy Citation Text
[in Chinese], [in Chinese], [in Chinese], [in Chinese]. Rapidly Tuned TEA CO2 Laser by a Scanning Mirror[J]. Chinese Journal of Lasers, 2007, 34(8): 1027