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Fabrication of optical waveguides in KGW by swift heavy ion beam irradiation

机译:快速重离子束辐照在KGW中制造光波导

摘要

Irradiations with F, O at 25 MeV and C at 14 MeV energy have been performed in KGd(WO4)2 (KGW) in order to fabricate optical waveguides by a novel route based on ion irradiation instead of ion implantation. The method relies on selecting the energy high enough so as to place the maximum of the electronic stopping power a few microns inside the crystal. Then, buried isotropic layers (amorphous-like) are formed which have a low refractive index value of 1.87 (compared to the three crystalline values which are above 2.0). The refractive index profiles obtained are Gaussian-like with O ions and more step-like with the usage of C ions. Fairly low fluences in the range 1 × 1013-1 × 1014 have been successfully explored. The results have been compared to those recently obtained for LiNbO3 and have been analyzed with a theoretical model based on thermal spike concept. © 2006 Elsevier B.V. All rights reserved.
机译:为了通过新颖的基于离子辐照而不是离子注入的途径制造光波导,已经在KGd(WO4)2(KGW)中进行了25 MeV的F,O和14 MeV能量的C辐照。该方法依赖于选择足够高的能量,以便将最大的电子截止功率置于晶体内部几微米之内。然后,形成具有1.87的低折射率值(与高于2.0的三个晶体值相比)的掩埋的各向同性层(非晶态)。所获得的折射率分布与O离子呈高斯型,而与C离子的使用呈阶梯状。已经成功地探索了1×1013-1×1014范围内的低通量。将结果与最近从LiNbO3获得的结果进行了比较,并已使用基于热尖峰概念的理论模型进行了分析。 ©2006 Elsevier B.V.保留所有权利。

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