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Influence of temperature-dependent excited state absorption on a broadly tunable UV Ce:LiLuF laser

机译:温度依赖性激发态吸收对广泛调谐紫外线Ce的影响:Liluf激光器

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We report the experimentally measured polarized small signal gain for Ce:LiLuF at 309 nm and 327 nm. The gain was found to be anisotropic and temperature dependent. Using a rate equation based model we have simulated the affect of excited state absorption (ESA) on the small signal gain in Ce:LiLuF. As a result we report the polarized emission and ESA cross-sections for Ce:LiLuF at 309 nm and 327 nm. We show the ESA to be temperature dependent and consequently demonstrate that ESA is the cause of the change in small signal gain with temperature in Ce:LiLuF. Further, we experimentally show the decrease, with temperature, of the ESA cross-sections at 309 nm causes a 70% increase in the laser output at 309 nm. We demonstrate how the introduction of a σ-biased loss into the cavity suppresses σ-polarized lasing at 327 nm. This counteracts the decrease in laser output below ~10 °C caused by the anisotopic nature and temperature dependence of the ESA in Ce:LiLuF at 327 nm.
机译:我们报告了在309nm和327nm处的Ce:liluf的实验测量的极化小信号增益。发现增益是各向异性和温度依赖性的。使用基于速率等式的模型,我们已经模拟了激发状态吸收(ESA)对CE:LILUF的小信号增益的影响。结果,我们报告了CE:Liluf的偏振发射和ESA横截面,在309nm和327nm。我们将ESA显示为温度依赖性,因此证明ESA是CE:LILUF中温度的小信号增益变化的原因。此外,我们通过在309nm的ESA横截面上进行实验显示,在309nm下的eSA横截面的降低导致激光输出增加70%。我们展示了如何将Σ - 偏置损失引入腔中的损失抑制了327nm的σ偏振激光。这抵消了〜10℃的激光输出的减少,由ESA在Ce:Liluf在327nm处引起的激光输出引起。

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