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Overview of sol-gel guest-host materials chemistry for optical devices

机译:光学器件的溶胶-凝胶客体-主体材料化学概述

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Abstract: This paper gives an overview of opportunities for sol-gel glass guest-host materials chemistry in the area of glass integrated optics, glass integrated optics on silicon, from the perspective of optical devices and components. Our discussion locates sol-gel glass processing among several available and competing processes such as flame hydrolysis deposition and chemical vapor deposition for producing glass optical devices and components. For the most part, these are high temperature processes. Hybrid sol-gel glass chemistry (HSGG) is reviewed as an adaptable, potentially low cost, high volume, very low temperature alternative. HSGG offers an outstanding range of materials tunable in properties from ones that are closely related to organic polymers, to ones that are indistinguishable from high temperature inorganic glasses. HSGG gives the designer material compositions and properties that can be adapted to an enormous range of photonics attractive for their use in hybrid opto-electronic circuits. Reliability issues, packaging and interconnect challenges to the implementation of these materials are enumerated for the example of electro-optic modulation. !37
机译:摘要:本文从光学器件和组件的角度概述了溶胶-凝胶玻璃客体-主体材料化学在玻璃集成光学,硅上玻璃集成光学领域的机会。我们的讨论将溶胶-凝胶玻璃加工定位在几种可用的竞争性工艺中,例如火焰水解沉积和化学气相沉积,以生产玻璃光学器件和组件。在大多数情况下,这些是高温过程。混合溶胶-凝胶玻璃化学(HSGG)被认为是一种适应性强,潜在的低成本,高容量,极低温的替代品。 HSGG提供了一系列性能可调的材料,从与有机聚合物密切相关的材料到与高温无机玻璃无法区分的材料。 HSGG为设计人员提供了可适应多种光子学的材料成分和性能,这些光子学在混合光电子电路中的使用很有吸引力。以电光调制为例,列举了实现这些材料的可靠性问题,封装和互连挑战。 !37

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