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Modeling the pulse shape of Q-switched lasers to account for terminal-level relaxation

Modeling the pulse shape of Q-switched lasers to account for terminal-level relaxation
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摘要 To account for the effect of lower-level relaxation, we have derived a characteristic equation for describing the laser pulse from the modified rate equations for Q-switched lasers. The pulse temporal profile is related to the ratio of the lower-level lifetime to the cavity lifetime and the number of times the population inversion density is above the threshold. By solving the coupled rate equations numerically, the effect of terminal-level lifetime on pulse temporal behaviour is analysed. The mode is applied to the case of a diode-pumped Nd:YAG laser that is passively Q-switched by a Cr4+ :YAG absorber. Theoretical results show good agreement with the experiments. To account for the effect of lower-level relaxation, we have derived a characteristic equation for describing the laser pulse from the modified rate equations for Q-switched lasers. The pulse temporal profile is related to the ratio of the lower-level lifetime to the cavity lifetime and the number of times the population inversion density is above the threshold. By solving the coupled rate equations numerically, the effect of terminal-level lifetime on pulse temporal behaviour is analysed. The mode is applied to the case of a diode-pumped Nd:YAG laser that is passively Q-switched by a Cr4+ :YAG absorber. Theoretical results show good agreement with the experiments.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第3期233-238,共6页 中国物理B(英文版)
关键词 solid state laser passive Qnswitch Cr4+:YAG absorber solid state laser, passive Qnswitch, Cr4+:YAG absorber
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