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Reliability Analysis of an Inorganic-Organic Hybrid Sol-gel Material System for Waveguiding Applications

机译:用于波导应用无机 - 有机混合溶胶材料系统的可靠性分析

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A novel epoxy-functionalised sol-gel material system for use in photonic waveguiding applications has been developed for use in short-range optical interconnect applications.The sol-gel material is deposited by spin coating to form a thin-film up to 25pm in thickness.The resulting film is selectively cross-linked using photo-lithography,as part of a UV-thermal curing process.A tunable film refractive index over the range 1.48-1.515 is demonstrated.The near-field images of transmitted radiation(633nm)from fabricated waveguide structures shows both waveguiding and efficient light confinement within the UV-thermally produced core regions.A thermal stability analysis of the waveguides following"Telcordia"environmental testing protocols for passive devices is presented.It is concluded that this materials system has the potential for use in waveguiding applications in environments where enhanced thermo-mechanical stability is required.
机译:一种用于光子波导应用的新型环氧官能化溶胶材料系统,用于在短程光学互连应用中使用。通过旋涂沉积溶胶 - 凝胶材料,以形成厚度高达25磅的薄膜。所得薄膜使用光刻选择性地交联,作为UV-热固化过程的一部分。参照1.48-1.515范围内的可调谐薄膜折射率。传输辐射(633nm)的近场图像来自制造的波导结构显示了UV-热产生的核心区域内的波导和有效的光限制。介绍了“Telcordia”的波导的热稳定性分析,其被动装置的环境测试方案。得出结论,这种材料系统具有潜力在需要增强的热机械稳定性的环境中使用波导应用。

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