首页> 外文会议>Conference on High-Power Laser Ablation V pt.1; 20040425-20040430; Taos,NM; US >Fullerene-oxvgen-iodine laser (FOIL): physical principles
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Fullerene-oxvgen-iodine laser (FOIL): physical principles

机译:富勒烯-氧-碘激光器(FOIL):物理原理

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The paper considers the physical principles of developing the fullerene - oxygen - iodine laser (FOIL) with optical (sunlight in particular) pumping. Kinetic scheme of such a laser is considered. It is shown that the utmost efficiency of FOIL may exceed 40% of the energy, absorbed by fullerenes. Presented are the experimental results of singlet oxygen generation in liquid media (solutions and suspensions) and in solid-state structures, containing either fullerenes or fullerene-Kke nanopartickles (FNP). In experiment was shown the possibility of the singlet oxygen transfer to the gaseous phase by means of organizing of the solution (suspension) the boiling as well as of the gasodynamic wave of desorption from the solid-state structures, containing fullerenes or FNP. We present the preliminary experimental results of pulsed generation in optically pumped FOIL with the use of primary photodissociation of iodide for preparation of the atomic iodine in the generation zone. In the experiments on FOIL generation was implemented the principle of spectral separation of optical pumping.
机译:本文考虑了通过光学(特别是阳光)泵浦发展富勒烯-氧气-碘激光器(FOIL)的物理原理。考虑了这种激光器的动力学方案。结果表明,FOIL的最大效率可能超过富勒烯吸收的能量的40%。呈现的是在含有富勒烯或富勒烯-Kke纳米颗粒(FNP)的液体介质(溶液和悬浮液)和固态结构中产生单线态氧的实验结果。在实验中显示了通过组织溶液(悬浮液)沸腾以及从固态结构(包含富勒烯或FNP)中脱附的气体动力学波,单线态氧转移到气相的可能性。我们目前的初步实验结果是在光泵浦FOIL中使用碘化物的初级光解离来制备原子碘,在光泵浦FOIL中产生脉冲碘。在FOIL产生的实验中,实现了光泵浦的光谱分离原理。

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