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首页> 外文期刊>Advanced Optical Materials >The Beginner’s Guide to Chiral Plasmonics: Mostly Harmless Theory and the Design of Large-Area Substrates
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The Beginner’s Guide to Chiral Plasmonics: Mostly Harmless Theory and the Design of Large-Area Substrates

机译:手性等离子体的初学者指南:大多是无害的理论和大面积基板的设计

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摘要

Chiral plasmonics is a fascinating research field that is attractive to scientists from diverse backgrounds. Physicists study light-matter interactions, chemists seek ways to analyze enantiomeric molecules, biologists study living objects, and material engineers focus on scalable production processes. Successful access to this emergent field for an interdisciplinary community depends on overcoming three main issues. First, understanding the physical background of chiral plasmonics requires proper introduction in easy language. Second, pitfalls in the characterization of chiroplasmonic features can prevent accurate interpretation. Third, simple and robust methods capable of covering macroscopic substrate areas must be available. This tutorial-style review addresses these issues with the goal to provide a comprehensive introduction into chiral plasmonic nanostructures. It starts with a brief introduction of the relevant physics involved in chiral light-matter interactions. A brief guide about how to adequately characterize samples follows. Subsequently, an overview of fabrication techniques that produce chiral substrates over large areas is given, and the strengths and weaknesses of the different approaches are discussed. The focus is on simple and robust processes that do not require clean room facilities and can be implemented by a much larger scientific audience.
机译:手性血浆是一种迷人的研究领域,对来自不同背景的科学家具有吸引力。物理学家研究淡品相互作用,化学家寻求分析对映体分子的方法,生物学家研究生活对象,材料工程师专注于可扩展的生产过程。成功访问跨学科社区的新兴字段取决于克服三个主要问题。首先,了解手性血浆的物理背景需要以简单的语言进行适当的介绍。其次,陷阱特征表征的陷阱可以防止准确的解释。必须使用能够覆盖宏观基板区域的第三,简单且鲁棒的方法。本教程风格的审查解决了这些问题,目标是为手性等离子体纳米结构进行全面介绍。它首先简要介绍了手性灯具相互作用的相关物理学。关于如何充分表征样品的简要指导。随后,给出了在大区域产生手性基板的制造技术的概述,并且讨论了不同方法的强度和弱点。重点是简单且坚固的流程,不需要洁净室设施,可以由更大的科学观众实现。

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