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Photonic waveguide engineering using pulsed lasers #x2014; A novel approach for non-clean room fabrication!

机译:使用脉冲激光器的光子波导工程-一种用于非洁净室制造的新颖方法!

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Over the last 25 years has seen an unprecedented increase in the growth of phonic components based on semiconductor and solid-state lasers, glass and polymer based optical fibres, and organic LEDs. Emerging technology for component engineering must embed dissimilar materials based devices into an integrated form which is more efficient. In this article, we demonstrate techniques for overcoming the materials related limitations by adopting thin-film deposition techniques based on nano- and femto-second pulsed laser deposition. Three examples of thin-film fabrication for near-IR devices using Er3+-ion doped glass-on-GaAs, Er3+-ion doped glass-polydimethyl silane (PDMS) polymer, and Tm3+-doped nano-silicon thin films and gain medium waveguides are discussed. The modelling tools are used a priori for waveguide engineering for ascertaining the extent to which the structural incompatibility due to mismatch strain can be minimized. The structure and spectroscopic properties of Er3+-ion doped thin films on silica, polymer, and semiconductor GaAs substrates were examined in detail and are reported. We demonstrate the formation of glass-polymer superlattice structures for waveguide fabrication for overcoming the solubility limits of Er3+-ions in PDMS polymers. For inscribing waveguides in superlattice structures and nano silicon structures, the ablation machining using fs-pulsed Ti-sapphire laser was used, and the resulting spectroscopic properties of waveguides are discussed.
机译:在过去的25年中,基于半导体和固态激光器,玻璃和聚合物基光纤以及有机LED的语音组件的增长达到了空前的增长。组件工程的新兴技术必须将基于异种材料的设备嵌入到更高效的集成形式中。在本文中,我们演示了采用基于纳米和飞秒脉冲激光沉积的薄膜沉积技术来克服材料相关限制的技术。使用掺有Er3 +离子的GaAs上玻璃,掺Er3 +离子的玻璃-聚二甲基硅烷(PDMS)聚合物以及掺有Tm3 +的纳米硅薄膜和增益介质波导的近红外器件薄膜制造的三个例子是讨论过。该建模工具是先验地用于波导工程的,以确定可以将由于失配应变而导致的结构不相容性最小化的程度。详细检查并报道了在二氧化硅,聚合物和半导体GaAs衬底上掺Er3 +离子的薄膜的结构和光谱性质。我们证明了用于波导制造的玻璃-聚合物超晶格结构的形成,以克服Er3 +-离子在PDMS聚合物中的溶解度极限。为了刻画超晶格结构和纳米硅结构中的波导,使用了使用fs脉冲钛-蓝宝石激光器进行的烧蚀加工,并对波导的光谱特性进行了讨论。

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