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Integrated optical components using hybrid organic-inorganic materials prepared by sol-gel technology.

机译:使用通过溶胶-凝胶技术制备的有机-无机杂化材料制成的集成光学组件。

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摘要

A technological platform based on low-temperature hybrid sol-gel method for fabrication of optical waveguides and integrated optical components has been developed. The developed chemistry for doping incorporation in the host network provides a range of refractive indexes (1.444–1.51) critical for device optimization. A passivation method for improving long-term stability of organic-inorganic sol-gel material is reported. The degradation of waveguide loss over time due to moisture adsorption from the atmosphere is drastically suppressed by coating the material with a protective thin SiO2 film. The results indicate a long-term optical loss below 0.3 dB/cm for protected waveguides.; The theory of multimode interference couplers employing self-imaging effect is described. A novel approach for design of high-performance MMI devices in low-contrast material is proposed. The design method is based on optimization of refractive index contrast and width of a multimode waveguide (the body of MMI couplers) to achieve a maximum number of constructively interfering modes resulting to the best self-imaging. This optimization is carried out using 3D BPM simulations. This method was applied to design 1 x 4, 1 x 12, and 4 x 4 MMI couplers and led to a superior performance in excess loss, power imbalance in output ports, and polarization sensitivity. Taking advantage of the inherent input-output phase relations in a 4 x 4 MMI coupler, an optical 90° hybrid is realized by incorporation a Y-junction to coherently excite two ports of the coupler.; A series of MMI couplers were fabricated and characterized. The experimental results are in good agreement with the design. Measured performance of the sol-gel derived MMI components was compared to analogues fabricated by other technologies. The comparison demonstrates the superior performance of the sol-gel devices. The polarization sensitivity of all fabricated couplers is below 0.05 dB.
机译:开发了基于低温混合溶胶-凝胶法制造光波导和集成光学元件的技术平台。用于在主机网络中掺入掺杂物的已开发化学方法提供了一系列对于器件优化至关重要的折射率(1.444–1.51)。报道了一种用于改善有机-无机溶胶-凝胶材料的长期稳定性的钝化方法。通过在材料上覆盖一层保护性SiO 2 薄膜,可以极大地抑制由于从大气中吸收水分而导致的波导损耗随时间的下降。结果表明受保护的波导的长期光学损耗低于0.3 dB / cm。描述了利用自成像效应的多模干涉耦合器的原理。提出了一种用于设计低对比度材料的高性能MMI器件的新颖方法。该设计方法基于多模波导(MMI耦合器的主体)的折射率对比度和宽度的优化,以实现最大数量的相长干涉模式,从而实现最佳的自成像。使用3D BPM仿真来执行此优化。此方法用于设计1 x 4、1 x 12和4 x 4 MMI耦合器,并在超额损耗,输出端口功率不平衡和极化灵敏度方面具有出色的性能。利用4 x 4 MMI耦合器中固有的输入输出相位关系,通过结合一个Y结来相干地激发耦合器的两个端口,可以实现90°光学混合。制造了一系列MMI耦合器并进行了表征。实验结果与设计吻合良好。将溶胶-凝胶衍生的MMI组件的测量性能与其他技术制造的类似物进行了比较。对比显示了溶胶-凝胶装置的优越性能。所有预制耦合器的极化灵敏度均低于0.05 dB。

著录项

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 145 p.
  • 总页数 145
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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