Qi Jilan, Liu Shiming, Wan Chongyi. THE EXPERIMENTAL STUDIES OF THE CATALYSTS FOR THE CLOSED-CYCLE TEA CO2 LASER[J]. Journal of Electronics & Information Technology, 1992, 14(5): 555-560.
Citation:
Qi Jilan, Liu Shiming, Wan Chongyi. THE EXPERIMENTAL STUDIES OF THE CATALYSTS FOR THE CLOSED-CYCLE TEA CO2 LASER[J]. Journal of Electronics & Information Technology, 1992, 14(5): 555-560.
Qi Jilan, Liu Shiming, Wan Chongyi. THE EXPERIMENTAL STUDIES OF THE CATALYSTS FOR THE CLOSED-CYCLE TEA CO2 LASER[J]. Journal of Electronics & Information Technology, 1992, 14(5): 555-560.
Citation:
Qi Jilan, Liu Shiming, Wan Chongyi. THE EXPERIMENTAL STUDIES OF THE CATALYSTS FOR THE CLOSED-CYCLE TEA CO2 LASER[J]. Journal of Electronics & Information Technology, 1992, 14(5): 555-560.
For various catalysts at different temperature, the percentages of O2 concentration versus time or number of discharge pulses were obtained in a closed-cycle TEA CO2 laser with the magnetic oxygen analyzer. The experimental phenomena were analysed. Several catalysts were compared in detail.
D. S. Stark, M. R. Harris, J. Phys. E: Sci. Instrum, 16(1983)6, 492-496.[2]H. Shields, A. L. S. Smith, B. Norris, J. Phys. D; Appl. Phys., 9(1976)11, 1587-1603.[3]P, W. Pace, M. Lacombe, IEEE J. of QE, QE-14(1978)4, 263-274.[4]Hirokazu Hokazono et al.,J. Appl. Phys. 62(1987)5, 1585-1593.[5]Yutaka Uchida et al., Japanese J. of Appl. Phys, 29(1990)7, 1266-1269.[6]D. S. Stark et al., IEEE J. of QE, QE-11(1975)9, 774-778.