首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Ion-exchanged optical waveguides fabricated in novel Er~(3+) and Er~(3+)/Yb~(3+)-doped silicate glasses: Relations between glass composition, basicity and waveguide properties
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Ion-exchanged optical waveguides fabricated in novel Er~(3+) and Er~(3+)/Yb~(3+)-doped silicate glasses: Relations between glass composition, basicity and waveguide properties

机译:用新型掺Er〜(3+)和掺Er〜(3 +)/ Yb〜(3+)的硅酸盐玻璃制造的离子交换光波导:玻璃成分,碱度和波导特性之间的关系

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Planar optical waveguide fabricated in erbium-doped glasses became attractive due to their light emission at 1.5 μm, thereby shown like candidates for optical amplifiers or waveguide lasers. In this study we focused on the influence of chemical compositions of specially formulated Er~(3+) and Er~(3+)/Yb~(3+)-doped silicate glasses on the ion-exchange process and optical properties of the p.m fabricated waveguides. Optical waveguides were fabricated by a routine K~+ ←→ Na~+ ion-exchange in a set of the glasses that had various contents of the RE ions and different optical basicity. Properties of the fabricated planar waveguides were studied by means of dark mode spectroscopy (DMS) at 671 nm while the chemical composition of the waveguides was determined using electron microscope analysis (EMA). The results are discussed from a point of view of the content of the active ions, glass permeability (i.e. glass covalence and glass basicity) for the exchanged ions and optical properties of the fabricated waveguides. Diffusion that proceeds during the ion-exchange will be characterized by the pertinent diffusion coefficients and concentration depth profiles of the involved ions important for the resultant properties. It was found that presence of the RE could substantially lower the penetrability of the glass matrix for the migrating ions.
机译:用掺glasses玻璃制成的平面光波导因其在1.5μm处的发光而变得引人注目,因此像光放大器或波导激光器的候选者一样显示。在这项研究中,我们集中于特殊配制的掺Er〜(3+)和掺Er〜(3 +)/ Yb〜(3+)的硅酸盐玻璃的化学组成对pm离子交换过程和光学性能的影响。制成的波导。通过常规的K〜+←→Na〜+离子交换,在一组具有各种RE离子含量和不同光学碱度的玻璃中制造出光波导。借助暗模式光谱法(DMS)在671 nm下研究了制造的平面波导的性能,同时使用电子显微镜分析(EMA)确定了波导的化学成分。从活性离子的含量,交换离子的玻璃渗透率(即玻璃价和玻璃碱度)以及所制造波导的光学特性的角度来讨论结果。在离子交换过程中发生的扩散将通过对所产生的特性重要的相关离子的相关扩散系数和浓度深度分布进行表征。已经发现,RE的存在会大大降低玻璃基质对迁移离子的渗透性。

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