首页> 外文会议>Conference on Semiconductor Lasers and Applications; 20071112-14; Beijing(CN) >Calculation and Comparison of Thermal Effect in Laser Diode pumped Slab Lasers with Different Pumping Structures
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Calculation and Comparison of Thermal Effect in Laser Diode pumped Slab Lasers with Different Pumping Structures

机译:不同抽运结构的激光二极管抽运平板激光器的热效应计算与比较

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摘要

Laser diode (LD) pumped slab laser, as an important high average power solid-state laser, is a promising laser source in military and industrial fields. The different laser diode pumping structures lead to different thermal effect in the slab gain medium. The thermal and stress analysis of slab laser with different pumping structure are performed by finite element analysis (FEA) with the software program ANSYS. The calculation results show that the face pumped and cooled laser results in a near one-dimension temperature distribution and eliminates thermal stress induced depolarization. But the structure is low pump efficiency due to the small thickness of slabs and the requirement to cool and pump through the same faces. End-pumped slab laser is high pump efficiency and excellent mode match, but its pumping arrangement is fairly complicated. The edge-pumped face-cooling slab laser's pump efficiency is better than face-pumping, and its pumping structure is simpler than end-pumped laser, but the tensile stress on surfaces may initiate failure of the gain medium so it is important to design so that the stress is well below the "stress fracture limit. The comparison of the thermal effects with different pumping structure shows that, the edge-pumped slab laser has engineering advantages in high power slab laser's application. Furthermore, the end-pumped slab laser tends to get the best beam quality, so it is fit for the application which has a special requirement on laser beam quality.
机译:激光二极管(LD)泵浦平板激光器是一种重要的高平均功率固态激光器,在军事和工业领域中是很有前途的激光源。不同的激光二极管泵浦结构在平板增益介质中导致不同的热效应。使用ANSYS软件通过有限元分析(FEA)对不同泵浦结构的平板激光器进行热应力分析。计算结果表明,面泵浦和冷却的激光器导致接近一维的温度分布,并消除了热应力引起的去极化。但是由于板的厚度小以及需要冷却和泵送通过相同面的结构,所以泵送效率低。端泵平板激光器具有较高的泵浦效率和出色的模式匹配,但其泵浦布置相当复杂。边缘泵浦面冷平板激光器的泵浦效率要比端面泵浦好,其泵浦结构要比端面泵浦激光器简单,但是表面上的拉应力可能会引发增益介质的失效,因此进行设计非常重要应力远低于“应力断裂极限”。不同泵浦结构的热效应比较表明,边缘泵浦平板激光器在大功率平板激光器的应用中具有工程优势。此外,端泵浦平板激光器倾向于为了获得最佳光束质量,因此适合对激光束质量有特殊要求的应用。

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