首页> 外文期刊>Nonlinear Optics, Quantum Optics >Thermal Focal Length Control in Passively Q-switched End Pulsed-Pumped Ceramics and Single Crystal Yb~(3+):YAG/ Cr~(4+):YAG Microchip Laser
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Thermal Focal Length Control in Passively Q-switched End Pulsed-Pumped Ceramics and Single Crystal Yb~(3+):YAG/ Cr~(4+):YAG Microchip Laser

机译:热焦距控制在被动Q开关端脉冲泵浦陶瓷和单晶Yb〜(3 +):YAG / Cr〜(4 +):YAG Microchip激光器

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摘要

Different thermal lens focal lengths with different pumping repetition rates for ceramic and single crystal Yb: YAG are calculated in order to control the thermal focal length without using additional optical elements. The effect of pumping energy and pump beam diameter on the thermal focal length is studied and it is found that the thermal focal length decreases with the increasing of pump energy and it decreases with the increasing of pump beam diameter. Finally, the stability of the cavity is investigated via an ABCD matrix method which shows that ceramic laser with lower thermal focal length has more stability than single crystal with higher thermal focal length.
机译:不同的热透镜焦距,具有不同泵送重复率的陶瓷和单晶Yb:计算YAG,以便在不使用额外的光学元件的情况下控制热焦距。 研究了泵送能量和泵浦光束直径对热焦距的影响,并发现热焦距随着泵能量的增加而降低,并且随着泵浦光束直径的增加而降低。 最后,通过ABCD矩阵方法研究了腔的稳定性,该方法示出了具有较低热焦距的陶瓷激光器的稳定性比单晶具有更高的热焦距。

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