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Scalable bottom-up fabrication of colloidal photonic crystals and periodic plasmonic nanostructures

机译:胶体光子晶体和周期性等离子体纳米结构的可扩展的自下而上制造

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摘要

Photonic crystals and plasmonics are two key techniques that could ultimately enable all-optical integrated circuits and quantum information processing. Unfortunately, the development and implementation of these techniques have been greatly impeded by expensive and painstaking top-down nanofabrication {e.g., electron-beam lithography). By contrast, bottom-up colloidal self-assembly and subsequent templating nanofabrication provide a much simpler, faster, and inexpensive alternative to nanolithography in creating highly ordered photonic crystals and plasmonic nanostructures. However, traditional colloidal self-assembly and templating nanofabrication approaches suffer from low throughput, incompatibility with standard microfabrication, and limited crystal structures which greatly hamper the mass-production and on-chip integration of practical nanooptical devices. In this feature article, we review the recent advances of a versatile spin-coating technological platform that enables rapid production of wafer-scale colloidal photonic crystals with unusual non-close-packed structures and a large variety of periodic metal nanostructures with tunable plasmonic properties.
机译:光子晶体和等离激元学是两项最终可以最终实现全光集成电路和量子信息处理的关键技术。不幸的是,昂贵且费力的自上而下的纳米加工(例如电子束光刻)极大地阻碍了这些技术的开发和实施。相比之下,自底向上的胶体自组装和随后的模板纳米加工为创建高度有序的光子晶体和等离激元纳米结构提供了比纳米光刻更简单,更快和更便宜的替代方法。然而,传统的胶体自组装和模板纳米加工方法具有产量低,与标准微加工不兼容以及有限的晶体结构等缺点,这极大地阻碍了实用纳米光学器件的批量生产和片上集成。在这篇专题文章中,我们回顾了多功能旋涂技术平台的最新进展,该技术平台可以快速生产具有不寻常的非密堆积结构以及具有可调等离子体特性的多种周期性金属纳米结构的晶圆级胶体光子晶体。

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