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In-plane coupled Fabry-Perot micro-cavities based on Si-air Bragg mirrors: a theoretical and practical study

机译:基于Si-Air Bragg镜的平面耦合法布里 - 珀罗微腔:理论和实践研究

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摘要

In-plane Fabry-Perot cavities based on deeply etched Bragg mirrors are used in many microphotonic applications including sensing, telecom, and swept laser devices. A main limitation to their performance is the small free spectral range (FSR) and low finesse. The FSR limits the dynamic range or the wavelength tuning range, while the linewidth limits the resolution. In this work, we propose coupled Fabry-Perot micro-cavities that greatly enhance the FSR, besides reducing the linewidth, which lead to higher finesse and better performance. The proposed structure is modeled and etched on Si substrate to a depth of 150 mu m using the deep reactive ion etching technology. Optical measurements indicate an enhanced FSR of more than 140 nm and a quality factor of 3152 using coupled cavities as compared to only 9 nm FSR for a single cavity of the same length. The over-etching and surface roughness, being the main effective fabrication tolerances, are modeled and extracted from the measurements. (c) 2018 Optical Society of America
机译:基于深度蚀刻的布拉格镜的面内法布里 - 珀罗腔用于许多缩放应用,包括传感,电信和扫描激光器件。它们性能的主要限制是小的自由谱范围(FSR)和低技巧。 FSR限制了动态范围或波长调谐范围,而LineWidth限制了分辨率。在这项工作中,除了减少线宽之外,我们提出了大大提升FSR的耦合法布里 - 珀罗微腔,这导致了更高的技巧和更好的性能。使用深反应离子蚀刻技术,在Si衬底上建模和蚀刻所提出的结构并蚀刻到150μm的深度。光学测量表示使用耦合腔的增强FSR,其高于140nm的高于140nm,并且使用耦合腔的质量因子与相同长度的单个腔的单个空腔相比。作为主要有效制造公差的过蚀刻和表面粗糙度是从测量的建模和提取的。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第18期|共9页
  • 作者单位

    Ain Shams Univ Fac Engn Engn Phys Dept Cairo Egypt;

    Ain Shams Univ Fac Engn Elect &

    Commun Engn Dept Cairo Egypt;

    Univ Paris Est ESYCOM EA2552 ESIEE Paris Marne La Vallee France;

    Univ Paris Est ESYCOM EA2552 ESIEE Paris Marne La Vallee France;

    Ain Shams Univ Fac Engn Engn Phys Dept Cairo Egypt;

    Ain Shams Univ Fac Engn Elect &

    Commun Engn Dept Cairo Egypt;

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  • 正文语种 eng
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