首页> 外文会议>Integrated Optics: Devices, Materials, and Technologies XI; Proceedings of SPIE-The International Society for Optical Engineering; vol.6475 >Silicon p-i-n optical waveguide modulators fabricated on the silicon and silicon-on-insulator substrates
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Silicon p-i-n optical waveguide modulators fabricated on the silicon and silicon-on-insulator substrates

机译:在硅和绝缘体上硅衬底上制造的硅p-i-n光波导调制器

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摘要

The fabrication and characterization of the p-i-n optical waveguide modulators on silicon-on-insulator (SOI) substrate were demonstrated. The modulation was based on the mechanism of carrier injection, or plasma dispersion effect. The corresponding p and n regions were defined in both types of silicon substrates (conventional p-doped and highly resistive SOI substrates with respective resistivities of p ~7-10Ω-cm and p ~ 7000-10000Ω-cm) using the spin-on-dopant (SOD) technique. The SOD diffusion process was conducted at 900-1000℃ in nitrogen ambient. The diffusion time and temperature, and the resistivity of SOI substrate used were the primary parameters dictating the resultant dopant concentrations and diffusion depths. For the modulators fabricated with various waveguide widths and electrode lengths, the corresponding modulation index was enhanced in response to an increase in the electrode (or modulation) length and/or a decrease in waveguide width. The highest modulation index of ~ 4.15% was successfully achieved for a silicon p-i-n waveguide modulator with 5 μm-wide waveguide and 7mm-long modulation electrode.
机译:演示了绝缘体上硅(SOI)基板上p-i-n光波导调制器的制造和特性。调制基于载流子注入或等离子体弥散效应的机制。使用旋涂法在两种类型的硅衬底(常规的p掺杂和高电阻SOI衬底,其各自的电阻率分别为p〜7-10Ω-cm和p〜7000-10000Ω-cm)中定义了相应的p和n区域。掺杂(SOD)技术。 SOD扩散过程是在氮气环境中于900-1000℃下进行的。扩散时间和温度以及所用SOI衬底的电阻率是决定所得掺杂剂浓度和扩散深度的主要参数。对于以各种波导宽度和电极长度制造的调制器,响应于电极(或调制)长度的增加和/或波导宽度的减小,相应的调制指数得以提高。具有宽度为5μm的波导和长度为7mm的调制电极的硅p-i-n波导调制器成功地达到了约4.15%的最高调制指数。

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