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首页> 外文期刊>Journal of optical technology >Contribution of dissolved platinum ions to heat dissipation in ytterbium-erbium glass under lamp pumping
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Contribution of dissolved platinum ions to heat dissipation in ytterbium-erbium glass under lamp pumping

机译:灯泵作用下溶解铂离子对镱-铒玻璃散热的贡献

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Subject of study. The contribution of platinum ions dissolved in ytterbium-erbium phosphate glasses to the heating of active elements under lamp pumping is investigated in this study. Laser-quality glasses are synthesized in platinum crucibles; therefore, they always contain a certain amount of platinum depending on many factors. One of these factors is the duration of the melting process, which for erbium glasses is two or more times longer than that for neodymium glasses. This results in an elevated platinum content in the former. Method and brief description of the experiement. Heat dissipation in an active element was determined using its relative elongation during the propagation of a pumping pulse. The elongation was obtained using an interferometric method. Glasses with different platinum contents were melted to determine the contribution of platinum ions to the overall heat dissipation of the active element. Experimental dependences of the platinum ion contribution to the overall heat dissipation on the concentration of platinum ions in LGS-KhCh glass (V. A. Kotel'nikov FIRE RAS) were obtained for active elements with sizes of (sic)4 x 80 mm. We established that up to 10 of the overall heat is generated in the absorption bands of the platinum ions in the active elements made of glass with a passive loss level corresponding to laser applications. The obtained data made it possible to explain the previously observed discrepancies between experimental data and the calculation results using a model of ytterbium-erbium and chromium-ytterbium-erbium active media proposed by the authors. The practical significance of this study is a recommendation of additional filtering of the pumping lamp radiation to reduce the heating of active elements formed of ytterbium-erbium glasses. (C) 2022 Optica Publishing Group.
机译:研究主题。本文研究了溶解在磷镱-铒玻璃中的铂离子对灯泵浦下活性元素加热的贡献。激光质量的玻璃是在铂金坩埚中合成的;因此,它们总是含有一定量的铂金,具体取决于许多因素。其中一个因素是熔化过程的持续时间,铒玻璃的熔化过程比钕玻璃的熔化过程长两倍或更多倍。这导致前者的铂含量升高。实验方法和简要说明。活性元件的散热是利用其在泵浦脉冲传播过程中的相对伸长率来确定的。伸长率是使用干涉法获得的。熔化不同铂含量的玻璃,以确定铂离子对活性元素整体散热的贡献。对于尺寸为(原文如此)4 x 80 mm的活性元素,获得了铂离子对总散热的贡献对LGS-KhCh玻璃中铂离子浓度的实验依赖性(V. A. Kotel'nikov FIRE RAS)。我们确定,高达10%的总热量是在玻璃制成的活性元件中铂离子的吸收带中产生的,其被动损耗水平与激光应用相对应。所获得的数据使得使用作者提出的镱-铒和铬-镱-铒活性介质模型来解释先前观察到的实验数据与计算结果之间的差异成为可能。本研究的实际意义在于建议对泵浦灯辐射进行额外滤波,以减少镱-铒玻璃形成的活性元素的加热。(C) 2022 Optica 出版集团。

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