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Design methodology of refractive index engineering by implantation of high-energy particles in electro-optic materials

机译:通过在电光材料中注入高能粒子进行折射率工程的设计方法

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摘要

Slab waveguides were constructed in K_(1-x)Li_xTa_(1-y)Nb_yO_3 crystals by the implantation of ~(12)C~(+4) ions at 30 MeV and ~(16)O~(+5) ions at 30 and 40 MeV. The waveguides were characterized by a prism coupler setup. A refractive index drop of 10.9% was observed in a layer formed by the implantation of ~(16)O~(+5) ions at 30 MeV. The carbon-implanted waveguides were found to be thermally stable after annealing at 450℃. A semiempirical formula for predicting the change in the refractive index given the parameters of the implantation process was developed. It is argued that the combination of the basic implantation process with the semiempirical formula can be developed to become a generic method for constructing complex electro-optic circuits with a wave-guided architecture.
机译:通过在30 MeV处注入〜(12)C〜(+4)离子和在30 MeV处注入〜(16)O〜(+5)离子,在K_(1-x)Li_xTa_(1-y)Nb_yO_3晶体中构造平板波导。 30和40 MeV。波导的特征在于棱镜耦合器的设置。在通过在30 MeV下注入〜(16)O〜(+5)离子形成的层中观察到了10.9%的折射率下降。发现碳注入波导在450℃退火后是热稳定的。给出了在给定注入工艺参数的情况下预测折射率变化的半经验公式。有人认为,基本的注入工艺与半经验公式的结合可以发展成为一种利用波导管结构构造复杂电光电路的通用方法。

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