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First demonstration of a laser emission in hybrid nanostructured optical fibres based on SiO2/SnO2 system doped by ytterbium ions

机译:demonstration离子掺杂的SiO2 / SnO2混合纳米结构光纤中激光发射的首次演示

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Recent years, researches have shown that it is possible to achieve nanostructured core fibres by incorporating dielectric [1,2], metallic nanoparticles such as Au, or quantum dots [3] in an amorphous matrix. These nanoparticles dispersed in a silica matrix present the advantage to accept a high concentration of doping ions such as rare-earth (RE) ions avoiding the quenching phenomenon, which allows to demonstrate a great potential in optical amplification. Zirconia nanoparticles have been successfully incorporated by G. Brasse et al. with the sol-gel method [1] and by Kir'Yanov et al. using the Modified Chemical Vapor Deposition (MCVD) [2]. The laser effect has been demonstrated in this Yb doped optical fibre. The incorporation of semiconductor nanoparticles in the core of the optical fibre is a challenge to get original optical properties such as original wavelength emission. Tin oxide appears as an interesting candidate due to its low phonon energy (700 cm
机译:近年来,研究表明,可以通过将电介质[1,2],金属纳米粒子(例如Au)或量子点[3]掺入非晶基质中来实现纳米结构芯纤维。这些分散在二氧化硅基质中的纳米颗粒具有接收高浓度掺杂离子(例如稀土(RE)离子)的优点,从而避免了猝灭现象,从而在光学放大中显示出巨大的潜力。氧化锆纳米粒子已被G. Brasse等成功纳入。用溶胶-凝胶法[1]和Kir'Yanov等人。使用改进的化学气相沉积(MCVD)[2]。在这种掺Yb的光纤中已证明了激光作用。半导体纳米粒子在光纤芯中的结合是获得原始光学特性(例如原始波长发射)的挑战。氧化锡由于其低声子能(700 cm

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