论文标题
TAMM等离子体对光子晶体技术的影响
The Impact of Tamm Plasmons on Photonic Crystals Technology
论文作者
论文摘要
这篇综述描述了基于具有金属涂层或插入物的周期性结构的混合光子质量结构,这些结构使用TAMM等离子体来传感应用。术语TAMM等离子体是指通过耦合增强表面等离子体共振吸收而产生的特定共振,并引起光子晶体提供的波长匹配光子带隙。基于TAMM等离子体的设备具有丰富的材料和几何组合,每个组合旨在进行特定的测量。尽管物理效应已得到充分记录和理解,但其在设备中的实现仍然是一个快速发展和繁荣的领域,这为新颖的设计和新应用留下了许多可能的可能性。因此,我们旨在对该主题进行完整的概述,以提供有序的设计和用途集合,并刺激有关TAMM等离子体的传感应用程序的进一步开发。
This review describes hybrid photonic-plasmonic structures based on periodic structures that have metallic coatings or inserts which make use of the Tamm plasmon for sensing applications. The term Tamm plasmon refers a particular resonance resulting from the enhancement of a surface plasmon resonance absorption via coupling to a wavelength-matching photonic bandgap provided by a photonic crystal. Tamm plasmon-based devices come in an ample variety of material and geometric combinations, each designed to perform a specific kind of measurement. While the physical effect is quite well documented and understood, its implementation in devices is still a rapidly developing and thriving field, which leaves open many possibilities for novel designs and new applications. We therefore aim of giving a complete overview on the topic, so as to provide an ordered collection of designs and uses, as well as to spur further development on the subject of the Tamm plasmon for sensing applications.