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Dewetting mechanisms and their exploitation for the large-scale fabrication of advanced nanophotonic systems

机译:脱模机构及其对高级纳米芯系统大规模制造的开发

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摘要

Recent progress in submicron- and nano-fabrication technologies has led to the emergence of novel photonic structures such as optical nanoantennas and metasurfaces. Real-life applications of these advanced photonic structures still require substantial improvement of the fabrication processes, in terms of their throughput and cost-effectiveness. Because of its simplicity and effectiveness, dewetting of a thin film has attained increasing attention as a feasible process for improving the scalability and productivity. Here, we provide an overview of the mechanisms and phenomenologies of dewetting to foster an improved fundamental understanding necessary for the optimisation of the dewetting process condition and template design. We then review the strategies demonstrating the use of templated-dewetting for producing well-aligned arrays of submicron- and nanostructures with great control over their size, shape and arrangement. Recent applications of dewetted structures in advanced nanophotonics are reviewed with an emphasis on the exploitation of dewetting mechanisms. Special attention is given to the fabrication of resonant optical nanoantennas and nanophotonic applications in which high repeatability and throughput are important parameters: sensing, colourisation, photovoltaics and nonlinear light frequency conversion. We expect this review to provide a basis for the use of thin-film dewetting to realise the industrial-level fabrication of various practical advanced photonic systems.
机译:亚微米和纳米制造技术的最新进展导致了新颖的光子结构,例如光学纳米烯烃和元件。这些高级光子结构的现实寿命应用仍然需要在其产量和成本效益方面进行制造过程的大量改善。由于其简单性和有效性,薄膜的脱模已经越来越受到改善可扩展性和生产率的可行过程。在这里,我们概述了脱水的机制和现象学,以促进优化脱水过程条件和模板设计所需的改进的基本理解。然后,我们审查了展示使用模板化脱模的策略,用于产生亚微米和纳米结构良好的亚麻和纳米结构阵列的策略,并控制其尺寸,形状和布置。勘探揭露结构在先进的纳米光线中的最新应用,重点是对脱模机制的开发。特别注意谐振光学纳米烯烃和纳米光电应用的制造,其中高可重复性和吞吐量是重要的参数:感测,小殖民化,光伏和非线性光频转换。我们预计本综述为使用薄膜脱水提供了一种实现各种实用先进光子系统的工业水平制造的基础。

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