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Laser materials based on transition metal ions

机译:基于过渡金属离子的激光材料

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The purpose of this presentation is to review the spectroscopic properties of the main laser materials based on transition metal ions which lead to noticeable laser performance at room temperature and, for very few cases, because of unique properties, when they are operated at cryogenic temperatures. The description also includes the materials which are currently being used as saturable absorbers for passive-Q-switching of a variety of other near- and mid-infrared solid state lasers. A substantial part of the article is devoted first to the description of the energy levels and of the absorption and emission transitions of the transition metal ions in various types of environments by using the well-known Tanabe-Sugano diagrams. It is shown in particular how these diagrams can be used along with other theoretical considerations to understand and describe the spectroscopic properties of ions sitting in crystal field environments of near-octahedral or near-tetrahedral symmetry. The second part is then dedicated to the description (positions and intensities) of the main absorption and emission features which characterize the different types of materials. (C) 2016 Elsevier B.V. All rights reserved.
机译:本演示文稿的目的是回顾基于过渡金属离子的主要激光材料的光谱特性,这些金属离子在室温下具有显着的激光性能,在极少数情况下,由于其独特的性能,在低温条件下操作时会产生明显的激光性能。该描述还包括当前用作各种其他近红外和中红外固态激光器的无源Q转换的可饱和吸收体的材料。本文的大部分内容首先致力于通过使用众所周知的田边-S野图来描述各种类型环境中过渡金属离子的能级以及吸收和发射跃迁。特别显示了如何将这些图表与其他理论考虑因素一起使用,以理解和描述位于近八面体或近四面体对称的晶体场环境中的离子的光谱性质。然后第二部分专门介绍主要吸收和发射特征的描述(位置和强度),这些特征表征了不同类型的材料。 (C)2016 Elsevier B.V.保留所有权利。

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