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Optical Performance of Ho:YLF Q-switched Tm:YAG Laser System

机译:Ho:YLF调Q Tm:YAG激光系统的光学性能

摘要

[[abstract]]The absorption cross-section of the Ho:YLF crystal is close to the emission cross-section of the Tm:YAG laser. According to the passive Q-switching theory, a giant laser pulse cannot be generated from the Ho:YLF Q-switched Tm:YAG laser system unless an internal focusing lens is utilized. In a previous work we experimentally demonstrated that passive Q-switching of the 2017-nm, flashlamp pumped Tm,Cr:YAG laser with a Ho:YLF saturable absorber could be obtained with an internal focusing lens. In this paper, we theoretically investigate the optical performance of the Ho:YLF Q-switched Tm:YAG laser system by solving the coupled rate equations. The simulation results indicate that the results obtained numerically are in good agreement with that obtained experimentally. Moreover, we study the passive Q-switching performance of the Ho:YLF Q-switched Tm:YAG laser system as functions of the reflectivity of the output coupler, the initial population of the saturable absorber ground state, the laser pumping rate, and the loss inside the laser resonator. On the other hand, assuming that a polarizer is utilized inside the laser cavity, we explore the passive Q-switching performance of the Ho:YLF Q-switched Tm:YAG laser system when the polarization of the laser light is along different direction between the two saturable absorber principal axes. Effect of the relative position between the saturable absorber and the output coupler is also investigated.
机译:[[摘要]] Ho:YLF晶体的吸收截面与Tm:YAG激光器的发射截面接近。根据无源Q开关理论,除非使用内部聚焦透镜,否则无法从Ho:YLF Q开关Tm:YAG激光系统中产生巨大的激光脉冲。在先前的工作中,我们通过实验证明了可以使用内部聚焦透镜获得带有Ho:YLF饱和吸收体的2017 nm闪光灯泵浦的Tm,Cr:YAG激光器的无源Q开关。在本文中,我们通过求解耦合速率方程,从理论上研究了Ho:YLF调Q Tm:YAG激光系统的光学性能。仿真结果表明,数值计算结果与实验结果吻合良好。此外,我们研究了Ho:YLF Q开关Tm:YAG激光系统的无源Q开关性能,它与输出耦合器的反射率,可饱和吸收体基态的初始填充,激光泵浦率和激光谐振器内部的损耗。另一方面,假设在激光腔内使用了偏振器,当激光的偏振沿不同方向时,我们研究了Ho:YLF调Q Tm:YAG激光系统的无源Q切换性能。两个饱和的吸收器主轴。还研究了可饱和吸收器和输出耦合器之间的相对位置的影响。

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  • 作者

    Chang Yi-An;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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