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Investigation of Fe: ZnSe laser in pulsed and repetitively pulsed regimes

机译:Fe:ZnSe激光在脉冲和重复脉冲模式下的研究

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摘要

The characteristics of a Fe : ZnSe laser pumped by a single-pulse free-running Er : YAG laser and a repetitively pulsed HF laser are presented. An output energy of 4.9 J is achieved in the case of liquid-nitrogen cooling of the Fe2+ : ZnSe active laser element longitudinally pumped by an Er: YAG laser with a pulse duration of 1 ms and an energy up to 15 J. The laser efficiency with respect to the absorbed energy is 47%. The output pulse energy at room temperature is 53 mJ. The decrease in the output energy is explained by a strong temperature dependence of the upper laser level lifetime and by pulsed heating of the active element. The temperature dependence of the upper laser level lifetime is used to determine the pump parameters needed to achieve high pulse energies at room temperature. Stable repetitively-pulsed operation of the Fe2+ : ZnSe laser at room temperature with an average power of 2.4 W and a maximum pulse energy of 14 mJ is achieved upon pumping by a 1-s train of 100-ns HF laser pulses with a repetition rate of 200 Hz.
机译:介绍了由单脉冲自由运行的Er:YAG激光器和重复脉冲HF激光器泵浦的Fe:ZnSe激光器的特性。在通过Er:YAG激光器纵向泵浦的Fe2 +:ZnSe有源激光元件进行液氮冷却时,获得了4.9 J的输出能量,脉冲持续时间为1 ms,能量最高为15J。激光效率吸收的能量为47%。室温下的输出脉冲能量为53 mJ。输出能量的降低是由于较高激光水平寿命的强烈温度依赖性以及有源元件的脉冲加热引起的。激光水平寿命上限的温度依赖性用于确定在室温下实现高脉冲能量所需的泵浦参数。 Fe2 +:ZnSe激光器在室温下以2.4 W的平均功率和14 mJ的最大脉冲能量稳定地重复脉冲运行,通过以100 ns重复频率的1 s列HF激光脉冲泵浦实现200 Hz

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