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The effect of dopant diffusion on modal birefringence in silica-on-silicon waveguides

机译:掺杂剂扩散对二氧化硅 - 硅波导模态双折射的影响

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Polarization-multiplexed optical signals require that the birefringence of optical devices be controlled. Birefringence in silica-on-silicon waveguides emerges from a combination of form birefringence and stress birefringence, both of which can be affected by the core dopant distribution in the case of rectangular-core waveguides. In this paper, we present a numerical and experimental study of the effect of dopant diffusion on waveguide modal birefringence. In the numerical study, modal birefringence is calculated with a finite element model that includes thermal stress effects. The effect of diffusion on form birefringence and stress birefringence will be illustrated. It will be shown that the initial index step of the waveguide has an influence on the evolution of the modal birefringence as a function of diffusion. In the experimental study, measurements of the phase and group birefringence will be presented as a function of waveguide width for waveguides with thermally diffused cores. It will be shown that thermal diffusion can be used for birefringence control of rectangular waveguides.
机译:偏振多路复用光信号要求控制光学器件的双折射。二氧化硅 - 硅波导中的双折射从形式双折射和应力双折射的组合出来,这两者都可以受到矩形芯波导的情况下的核心掺杂剂分布的影响。本文介绍了掺杂剂扩散对波导模态双折射的影响的数值和实验研究。在数值研究中,用包括热应力效应的有限元模型计算模态双折射。将说明扩散对形式双折射和应力双折射的影响。结果表明,波导的初始指数步骤对模态双折射的演变作为扩散的函数影响。在实验研究中,将呈现相和组双折射的测量作为具有热漫射芯的波导宽度的函数。将显示,热扩散可用于矩形波导的双折射控制。

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