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Optical and structural characterization of crystalline oxides for laser applications

机译:用于激光应用的结晶氧化物的光学和结构表征

摘要

The development of new solid-state lasers, especially those operating between 0.9 and 3.0 µm, has renewed general interest in the optical properties of rare-earth ions (Re3+) in crystalline oxides with garnet structure. At this purpose, the aim of this study concerns the optical and structural characterization of crystalline oxides for laser application, with the prospective of enhancing efficiency and tunability of solid state lasers, and the experimentation of new materials able to meet specific technological purposes. The development of new laser materials, with mixed structure, for example, is devoted to the remote sensing of the atmosphere. Light detection and ranging (LIDAR) or differential absorption lidar (DIAL) techniques can be applied to determine molecular constituent concentrations present in the atmosphere, such as water vapor. The possibility of tuning the laser emission to investigate the desired molecule easily explains the growing interest in the optical characterization of mixed garnet materials. In this scenery mixed garnet host materials, like Y3Al5O12 (YAG), Y3Sc2Ga3O12 (YSGG), Gd3Sc2Ga3O12 (GSGG) and Y3Sc2Al3O12 (YSAG), doped with lanthanides allow the so-called compositional tuning. In this work we studied the optical and structural properties of two different materials with garnet structure: yttrium aluminum garnet (Y3Al5O12 - YAG) doped with Fe3+ ions, and the mixed structure Y3Sc2Ga3O12 (YSGG) - Y3Al5O12 (YAG) doped with Neodymium. udud
机译:新型固态激光器的发展,特别是在0.9至3.0 µm之间工作的固态激光器,引起了人们对石榴石结构晶体氧化物中稀土离子(Re3 +)光学特性的普遍关注。为此,本研究的目的涉及用于激光应用的晶体氧化物的光学和结构表征,以期提高固态激光器的效率和可调谐性,并进行能够满足特定技术目的的新材料的实验。例如,具有混合结构的新型激光材料的开发致力于大气的遥感。可以应用光检测和测距(LIDAR)或差分吸收激光雷达(DIAL)技术来确定大气中存在的分子成分浓度,例如水蒸气。调节激光发射以研究所需分子的可能性很容易解释了对混合石榴石材料的光学表征的兴趣日益增长。在这种风景中,掺有镧系元素的混合石榴石主体材料,例如Y3Al5O12(YAG),Y3Sc2Ga3O12(YSGG),Gd3Sc2Ga3O12(GSGG)和Y3Sc2Al3O12(YSAG)允许进行所谓的成分调整。在这项工作中,我们研究了两种不同石榴石结构材料的光学和结构特性:掺有Fe3 +离子的钇铝石榴石(Y3Al5O12-YAG)和掺钕的Y3Sc2Ga3O12(YSGG)-Y3Al5O12(YAG)混合结构。 ud ud

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    Chiriu Daniele;

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  • 年度 2007
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