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Thermal Lensing in Diode-Pumped Yb:KGd(WO_4)_2 Lasers

机译:二极管泵浦Yb:KGd(WO_4)_2激光器中的热透镜

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摘要

Based on the features of diode-pumped lasers, a thermal model of the square cross-section of a Yb:KGd(WO_4)_2 (Yb:KGW) laser crystal was established. According to the latest reports on thermal parameters and considering the heat transfer on side surfaces, temperature distribution pumped-face distortion and thermal lens focal length were obtained by solving the anisotropy heat conductive equation. Under pump powers of 16 W, the highest temperature located at the centre of the pumped front surface was 309.9℃, the maximum distortion was 0.55 μm and the thermal lens focal length at the pump spot was 4.2 cm. It is shown that thermal lensing in b-cut Yb:KGW is quite serious and it can be lessened if the heat transfer is considered. As such, based on the calculations of thermal lens focal length, we designed a plane-concave cavity and then made a further study on the continuous output performances of diode-pumped Yb:KGW lasers.
机译:根据二极管泵浦激光器的特点,建立了Yb:KGd(WO_4)_2(Yb:KGW)激光晶体的方形截面热模型。根据有关热学参数的最新报道并考虑到侧面的热传递,通过求解各向异性导热方程,获得了温度分布的抽水面畸变和热透镜焦距。在泵浦功率为16 W的情况下,位于泵浦前表面中心的最高温度为309.9℃,最大变形为0.55μm,在泵浦点处的热透镜焦距为4.2 cm。结果表明,b切Yb:KGW中的热透镜非常严重,如果考虑传热的话可以减少。因此,基于热透镜焦距的计算,我们设计了一个平面凹腔,然后对二极管泵浦Yb:KGW激光器的连续输出性能进行了进一步研究。

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