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Structural and optical properties of Er, Yb co-doped Y2O3 thin films

机译:Er,Yb共掺杂Y2O3薄膜的结构和光学性质

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Thin Er3+ Yb3+ co-doped Y2O3 films were grown on (1 0 0) YAG substrates by pulsed laser despostition. Ceramic targets having different active ion concentration were used for ablation. The influence of the rare-earth content and oxygen pressure applied during the deposition on the structural, morphological and optical properties of the films were investigated. The films deposited at the lower pressure. 1 Pa, and at 1/10 Er to Yb doping ratio are highly textured along the (1 1 1) direction of the Y2O3 cubic phase. In addition to the crystalline structure, these films possess smoother surface compared to those prepared at the higher pressure, 10 Pa. All other films are polycrystalline, consisting of cubic and monoclinic phases of Y2O3. The rougher surface of the films produced at the higher-pressure leads to higher scattering losses and different behavior of the reflectivity spectra. Optical anisotropy in the films of less than 0.004 was measured regardless of the monoclinic structure obtained. Waveguide losses of about 1 dB/cm at 633 nm were obtained for the films produced at the lower oxygen pressure. (c) 2005 Elsevier B.V. All rights reserved.
机译:通过脉冲激光沉积在(1 0 0)YAG衬底上生长Er3 + Yb3 +共掺杂的Y2O3薄膜。具有不同活性离子浓度的陶瓷靶被用于消融。研究了沉积过程中稀土含量和氧气压力对薄膜结构,形态和光学性能的影响。膜在较低压力下沉积。 1 Pa,并且Er / Yb的掺杂比为1/10,沿Y2O3立方相的(1 1 1)方向高度织构化。与晶体结构相比,与在10 Pa更高压力下制备的薄膜相比,这些薄膜的表面更光滑。所有其他薄膜均为多晶,由Y2O3的立方相和单斜晶相组成。在较高压力下产生的膜的粗糙表面导致较高的散射损耗和反射光谱的不同行为。不管获得的单斜晶结构如何,测得的薄膜的光学各向异性都小于0.004。在较低的氧气压力下生产的薄膜在633 nm处获得约1 dB / cm的波导损耗。 (c)2005 Elsevier B.V.保留所有权利。

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