首页> 外文期刊>Optical Materials >Passively Q-switched diode-pumped Nd:YAG and Nd:YVO_4 using (Cr~(4+),Ca~(2+)):YAG and (Cr~(4+),Mg~(2+)):YAG saturable absorbers
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Passively Q-switched diode-pumped Nd:YAG and Nd:YVO_4 using (Cr~(4+),Ca~(2+)):YAG and (Cr~(4+),Mg~(2+)):YAG saturable absorbers

机译:使用(Cr〜(4 +),Ca〜(2 +)):YAG和(Cr〜(4 +),Mg〜(2 +)):YAG被动调Q二极管泵浦Nd:YAG和Nd:YVO_4饱和吸收体

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摘要

We report the operation of passively Q-switched diode-end-pumped Nd:YAG and Nd:YVO_4 lasers by employing Cr~(4+)-doped garnets with Ca~(2+) or Mg~(2+) as charge compensators. We found that the laser performance improved significantly, mainly in the Nd:YVO_4 system when (Cr~(4+),Mg~(2+)):YAG sample was used as a passive Q-switching. For example, in the Nd:YVO_4 and Nd:YAG lasers, the maximum peak power using (Cr~(4+),Mg~(2+)):YAG saturable absorber was higher by a factor of 8.5 and 2.6, respectively, relative to (Cr~(4+),Ca~(2+)):YAG. This fact is attributed to better optical quality of the (Cr~(4+),Mg~(2+)):YAG sample, as a result of improved dopant distribution and reduced internal stresses inside the saturable absorber crystals. Similar passively Q-switched laser performance can be obtained by using other garnets with an open structure, and hence, with low internal stresses, such as (Cr~(4+),Ca~(2+)):GGG. We also compared the laser performance of Nd:GdVO_4 with the same saturable absorbers and obtained both passive Q-switching and passive mode locking. By using an analytical model with the relevant physical parameters of the laser crystals and saturable absorbers it is possible to optimize the laser performance.
机译:我们通过采用掺有Ca〜(2+)或Mg〜(2+)的Cr〜(4+)石榴石来报告无源Q开关二极管端泵浦Nd:YAG和Nd:YVO_4激光器的操作。我们发现,当(Cr〜(4 +),Mg〜(2 +)):YAG样品用作无源Q开关时,激光性能显着提高,主要是在Nd:YVO_4系统中。例如,在Nd:YVO_4和Nd:YAG激光器中,使用(Cr〜(4 +),Mg〜(2 +)):YAG饱和吸收体的最大峰值功率分别高8.5和2.6倍,相对于(Cr〜(4 +),Ca〜(2 +)):YAG。这一事实归因于(Cr〜(4 +),Mg〜(2 +)):YAG样品的更好的光学质量,这是由于改善了掺杂剂分布并降低了可饱和吸收体晶体内部的内部应力。通过使用其他具有开放结构且因此具有低内应力的石榴石,例如(Cr〜(4 +),Ca〜(2 +)):GGG,可以获得类似的被动Q开关激光性能。我们还比较了具有相同饱和吸收剂的Nd:GdVO_4的激光性能,并获得了无源Q开关和无源模式锁定。通过使用具有激光晶体和可饱和吸收剂的相关物理参数的分析模型,可以优化激光性能。

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