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Luminescent materials based on semiconductor compound templates for random laser applications

机译:基于半导体化合物模板的发光材料,用于随机激光应用

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摘要

A survey of methods for the preparation of luminescent nano-composite materials with the focus on random laser media on the basis of porous semiconductor and dielectric templates is presented. Media with controlled light scattering properties are prepared by electrochemical dissolution of semiconductor substrates, or by electrochemical oxidation of metallic foils. For the introduction of optical gain properties to highly scattering medium prepared by electrochemical technologies, methods for doping porous semiconductor GaP, GaAs and InP as well as dielectric Al_2O_3 and TiO_2 templates with rarernearth elements (Eu, Er) and transition metals (Cr, Ti) were developed. The possibility of producing a medium with optical gain properties is demonstrated also by making use of ex-citonic effects such as exciton-exciton scattering and stimulated emission of electron-hole plasma. This approach is suitable for composite materials containing ZnO and ZnSe ingredients. A comparative analysis of the produced structures from the point of view of light emission efficiency, threshold for the onset of laser action, and other characteristics is presented.
机译:介绍了一种制备发光纳米复合材料的方法,该方法以多孔半导体和介电模板为基础,重点研究随机激光介质。通过半导体衬底的电化学溶解或金属箔的电化学氧化来制备具有受控的光散射特性的介质。为了将光学增益特性引入通过电化学技术制备的高散射介质中,掺杂了稀土元素(Eu,Er)和过渡金属(Cr,Ti)的多孔半导体GaP,GaAs和InP以及电介质Al_2O_3和TiO_2模板的掺杂方法被开发。通过利用激子-激子散射和电子空穴等离子体的受激发射等激子效应,也证明了生产具有光学增益特性的介质的可能性。此方法适用于包含ZnO和ZnSe成分的复合材料。从发光效率,激光作用开始的阈值和其他特性的角度对制成的结构进行了比较分析。

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