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ITO-TiN-ITO 三明治用于近红外等离子体材料。

ITO-TiN-ITO Sandwiches for Near-Infrared Plasmonic Materials.

机构信息

State Key Laboratory of Modern Optical Instrumentation, College of Optical Science and Engineering , Zhejiang University , Hangzhou 310027 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 May 2;10(17):14886-14893. doi: 10.1021/acsami.8b01760. Epub 2018 Apr 19.

Abstract

Indium tin oxide (ITO)-based sandwich structures with the insertion of ultrathin (<10 nm) titanium nitride (TiN) are investigated as near-infrared (NIR) plasmonic materials. The structural, electrical, and optical properties reveal the improvement of the sandwich structures stemmed from TiN insertion. TiN is a well-established alternative to noble metals such as gold, elevating the electron conductivity of sandwich structures as its thickness increases. Dielectric permittivities of TiN and top ITO layers show TiN-thickness-dependent properties, which lead to moderate and tunable effective permittivities for the sandwiches. The surface plasmon polaritons (SPP) of the ITO-TiN-ITO sandwich at the telecommunication window (1480-1570 nm) are activated by prism coupling using Kretschmann configuration. Compared with pure ITO films or sandwiches with metal insertion, the reflectivity dip for sandwiches with TiN is relatively deeper and wider, indicating the enhanced coupling ability in plasmonic materials for telecommunications. The SPP spatial profile, penetration depth, and degree of confinement, as well as the quality factors, demonstrate the applicability of such sandwiches for NIR plasmonic materials in various devices.

摘要

基于铟锡氧化物(ITO)的三明治结构,插入超薄(<10nm)氮化钛(TiN),被研究为近红外(NIR)等离子体材料。结构、电学和光学性质揭示了 TiN 插入引起的三明治结构的改善。TiN 是金等贵金属的成熟替代品,随着厚度的增加,提高了三明治结构的电子电导率。TiN 和顶部 ITO 层的介电常数表现出 TiN 厚度依赖性,这导致了三明治的中等和可调谐的有效介电常数。使用 Kretschmann 配置的棱镜耦合,在电信窗口(1480-1570nm)激活 ITO-TiN-ITO 三明治的表面等离子体激元(SPP)。与纯 ITO 薄膜或具有金属插入的三明治相比,具有 TiN 的三明治的反射率下降相对更深和更宽,表明在用于电信的等离子体材料中增强了耦合能力。SPP 空间分布、穿透深度和限制程度以及品质因数,证明了这种三明治在各种器件中作为近红外等离子体材料的适用性。

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