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Spectroscopy of Nd-doped Laser Materials

机译:掺钕激光材料的光谱学

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Laser design codes utilize laser properties provided by materials manufacturers for performance modeling. Large scale manufacturing of materials during compositional developments for a particular laser design is not economically feasible. Nevertheless, the laser properties derived from the available sample volumes must be reliable and reproducible. In recent years, as a result of the renewed interest in novel glasses for ultrafast laser applications, SCHOTT has developed improved measurements and methodologies for providing the most accurate information possible to laser scientists. Even though the J-O method is robust and time tested for the spectroscopic characterization of Nd~(3+), the accuracy of the results requires reliable measurements. This paper outlines the J-O approximation for manifold to manifold transitions, measurements needed, and some of the pitfalls to watch for during the collection of data for Nd-doped materials.
机译:激光设计规范利用材料制造商提供的激光属性进行性能建模。在特定激光设计的成分开发过程中大规模制造材料在​​经济上不可行。但是,从可用样本量得出的激光特性必须可靠且可重现。近年来,由于人们对用于超快激光应用的新型眼镜的重新兴趣,肖特开发了改进的测量和方法,可为激光科学家提供最准确的信息。尽管J-O方法是稳健的并且经过了Nd〜(3+)光谱表征的时间测试,但结果的准确性仍需要可靠的测量。本文概述了歧管到歧管过渡的J-O近似值,所需的测量值以及在收集Nd掺杂材料的数据期间要注意的一些陷阱。

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