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Advancement and Problems of Fullerene-Oxygen-Iodine Laser

机译:富勒烯-氧-碘激光的发展与问题

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The methods of improving the efficiency of a fullerene-oxygen-iodine laser are investigated. In the course of this research, we developed new fullerene coatings that possess better mechanical and radiative hardness, as well as higher efficiency of singlet oxygen generation. We show that, by using these coatings, the energy yield per unit volume of the active medium can be increased to 9 J/l, which is almost two times higher than the previous result. The energy efficiency of the laser can also be increased by a factor of nearly two. At the same time, several problems were revealed that hinder the further improvement of the laser efficiency and its long-term operation with stable parameters of the output radiation. We outline principal approaches to further optimization of the laser design that would help to overcome the negative factors and make it possible to create a fullerene-oxygen-iodine laser with high and stable parameters of the output radiation.
机译:研究了提高富勒烯-氧-碘激光器效率的方法。在这项研究过程中,我们开发了具有更好的机械和辐射硬度以及更高的单线态氧生成效率的新型富勒烯涂层。我们表明,通过使用这些涂层,活性介质每单位体积的能量产量可以提高到9 J / l,几乎是以前结果的两倍。激光器的能量效率也可以提高近两倍。同时,发现了一些问题,这些问题阻碍了激光器效率的进一步提高及其在输出辐射参数稳定的情况下的长期运行。我们概述了进一步优化激光器设计的主要方法,这些方法将有助于克服不利因素,并有可能制造出具有高且稳定的输出辐射参数的富勒烯-氧-碘激光器。

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