Tunable near-infrared epsilon-near-zero and plasmonic properties of Ag-ITO co-sputtered composite films

Series of co-sputtered silver-indium tin oxide (Ag-ITO) films are systematically fabricated. By tuning the atomic ratio of silver, composite films are manifested to have different microstructures with limited silver amount (<3 at.%). Two stages for film morphology changing are proposed to describ...

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Main Authors: Chaonan Chen, Zhewei Wang, Ke Wu, Hui Ye
Format: Article
Language:English
Published: Taylor & Francis Group 2018-12-01
Series:Science and Technology of Advanced Materials
Subjects:
Online Access:http://dx.doi.org/10.1080/14686996.2018.1432230
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spelling doaj-860e609df4a94ec7888f780bae028e842020-11-24T21:40:14ZengTaylor & Francis GroupScience and Technology of Advanced Materials1468-69961878-55142018-12-0119117418410.1080/14686996.2018.14322301432230Tunable near-infrared epsilon-near-zero and plasmonic properties of Ag-ITO co-sputtered composite filmsChaonan Chen0Zhewei Wang1Ke Wu2Hui Ye3Zhejiang UniversityZhejiang UniversityZhejiang UniversityZhejiang UniversitySeries of co-sputtered silver-indium tin oxide (Ag-ITO) films are systematically fabricated. By tuning the atomic ratio of silver, composite films are manifested to have different microstructures with limited silver amount (<3 at.%). Two stages for film morphology changing are proposed to describe different status and growth mechanisms. The introduction of silver improves the preferred orientations of In2O3 component significantly. Remarkably, dielectric permittivity of Ag-ITO films is highly adjustable, allowing the cross-over wavelengths λ c to be changed by more than 300 nm through rapid post-annealing, and thus resulting in tunable epsilon-near-zero and plasmonic properties in the near-infrared region. Lower imaginary permittivity compared with pure metal films, as well as larger tunability in λ c than pure ITO films suggest the potentiality of Ag-ITO films as substituted near-infrared plasmonic materials. Extended Maxwell-Garnett model is applied for effective medium approximation and the red-shifting of epsilon-near-zero region with the increase of silver content is well-fitted. Angle-variable prism coupling is carried out to reveal the surface plasmon polariton features of our films at optical communication wavelength. Broad dips in reflectance curves around 52–56° correspond to the SPP in Ag-ITO films.http://dx.doi.org/10.1080/14686996.2018.1432230Indium tin oxideco-sputtered composite filmstunable optical propertiesplasmonics
collection DOAJ
language English
format Article
sources DOAJ
author Chaonan Chen
Zhewei Wang
Ke Wu
Hui Ye
spellingShingle Chaonan Chen
Zhewei Wang
Ke Wu
Hui Ye
Tunable near-infrared epsilon-near-zero and plasmonic properties of Ag-ITO co-sputtered composite films
Science and Technology of Advanced Materials
Indium tin oxide
co-sputtered composite films
tunable optical properties
plasmonics
author_facet Chaonan Chen
Zhewei Wang
Ke Wu
Hui Ye
author_sort Chaonan Chen
title Tunable near-infrared epsilon-near-zero and plasmonic properties of Ag-ITO co-sputtered composite films
title_short Tunable near-infrared epsilon-near-zero and plasmonic properties of Ag-ITO co-sputtered composite films
title_full Tunable near-infrared epsilon-near-zero and plasmonic properties of Ag-ITO co-sputtered composite films
title_fullStr Tunable near-infrared epsilon-near-zero and plasmonic properties of Ag-ITO co-sputtered composite films
title_full_unstemmed Tunable near-infrared epsilon-near-zero and plasmonic properties of Ag-ITO co-sputtered composite films
title_sort tunable near-infrared epsilon-near-zero and plasmonic properties of ag-ito co-sputtered composite films
publisher Taylor & Francis Group
series Science and Technology of Advanced Materials
issn 1468-6996
1878-5514
publishDate 2018-12-01
description Series of co-sputtered silver-indium tin oxide (Ag-ITO) films are systematically fabricated. By tuning the atomic ratio of silver, composite films are manifested to have different microstructures with limited silver amount (<3 at.%). Two stages for film morphology changing are proposed to describe different status and growth mechanisms. The introduction of silver improves the preferred orientations of In2O3 component significantly. Remarkably, dielectric permittivity of Ag-ITO films is highly adjustable, allowing the cross-over wavelengths λ c to be changed by more than 300 nm through rapid post-annealing, and thus resulting in tunable epsilon-near-zero and plasmonic properties in the near-infrared region. Lower imaginary permittivity compared with pure metal films, as well as larger tunability in λ c than pure ITO films suggest the potentiality of Ag-ITO films as substituted near-infrared plasmonic materials. Extended Maxwell-Garnett model is applied for effective medium approximation and the red-shifting of epsilon-near-zero region with the increase of silver content is well-fitted. Angle-variable prism coupling is carried out to reveal the surface plasmon polariton features of our films at optical communication wavelength. Broad dips in reflectance curves around 52–56° correspond to the SPP in Ag-ITO films.
topic Indium tin oxide
co-sputtered composite films
tunable optical properties
plasmonics
url http://dx.doi.org/10.1080/14686996.2018.1432230
work_keys_str_mv AT chaonanchen tunablenearinfraredepsilonnearzeroandplasmonicpropertiesofagitocosputteredcompositefilms
AT zheweiwang tunablenearinfraredepsilonnearzeroandplasmonicpropertiesofagitocosputteredcompositefilms
AT kewu tunablenearinfraredepsilonnearzeroandplasmonicpropertiesofagitocosputteredcompositefilms
AT huiye tunablenearinfraredepsilonnearzeroandplasmonicpropertiesofagitocosputteredcompositefilms
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