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首页> 外文期刊>Optics and Lasers in Engineering >Modelling of diffractive structures in photorefractive Er/Yb-co-doped glass waveguides
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Modelling of diffractive structures in photorefractive Er/Yb-co-doped glass waveguides

机译:光折变掺Er / Yb共掺玻璃波导中衍射结构的建模

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摘要

The photorefractive properties of Ge-doped glasses are routinely exploited for the production of Bragg gratings in optical fibres. Today, the most common fabrication procedure relies on the phase-mask technique, which allows to produce (through UV irradiation) a periodical refractive index variation in Ge-doped fibre cores. The same methodology can be applied to integrated optical components in photorefractive glass planar substrates. If rare earth ions (such as erbium and ytterbium) are included in the glass matrix, both active and photorefractive properties can be combined in the same material. This fact allows for the possibility of realizing complex integrated optical components, such as Bragg-refiection lasers and amplifiers. In this work, a numerical analysis of a waveguide Bragg reflector is presented based on a homemade modelling technique.
机译:常规地利用掺Ge玻璃的光折变性质来生产光纤中的布拉格光栅。如今,最常见的制造程序依赖于相位掩膜技术,该技术允许(通过UV辐射)在掺Ge的纤维芯中产生周期性的折射率变化。可以将相同的方法应用于光折射玻璃平面基板中的集成光学组件。如果玻璃基质中包含稀土离子(例如和),则可以将活性和光折变特性组合在同一材料中。这一事实使得有可能实现复杂的集成光学组件,例如布拉格反射激光器和放大器。在这项工作中,基于自制建模技术对波导布拉格反射器进行了数值分析。

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