Individual characteristics and gain ratios of surface plasmon resonance and Tamm plasmon resonance in optical Tamm states

被引:0
|
作者
Tsung, Cheng-Sheng [1 ]
Chen, Jiann-Yeu [2 ]
Hung, Shao-Wen [3 ]
Tu, Ching-Yu [4 ]
Chou, Hsin-Yu [1 ]
Chiang, Wei-Hsiang [1 ]
Wuu, Dong-Sing [1 ,5 ]
机构
[1] Natl Chung Hsing Univ, Dept Mat Sci & Engn, Taichung 40227, Taiwan
[2] Natl Chung Hsing Univ, Innovat & Dev Ctr Sustainable Agr, Taichung 402, Taiwan
[3] Agr Technol Res Inst, Anim Technol Res Ctr, Div Anim Ind, Hsinchu 300, Taiwan
[4] Minist Agr, Agr Chem Res Inst, Residue Control Divion, Taichung 413, Taiwan
[5] Natl Chi Nan Univ, Dept Appl Mat & Optoelect Engn, Nantou 54561, Taiwan
关键词
Tamm state-coupled wave; Surface plasmon resonance wave; Optical tamm state; Tin-doped indium oxide; Kelvin probe force microscope; ITO; MICROSTRUCTURE; POLARITON; SUBSTRATE; FILMS;
D O I
10.1016/j.mssp.2024.109243
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this study, we enhanced Tamm plasmonic polariton (TPP) by adjusting the thickness of the indium tin oxide (ITO) layer, which altered the material's optical properties and electric field distribution, strengthening Tam plasma resonance (TPR) at specific wavelengths. Modifying the metal density in the ITO layer created a structure that supports surface plasmon (SP) modes, further amplifying surface plasmonic polariton (SPP). These changes improved SP mode coupling efficiency and resonance intensity. Optical model analysis and experiments revealed the resonance behaviors of TPP and SPP, showing changes in transmission spectra in the ultraviolet and visible regions. Raman spectroscopy confirmed variations in TPP and SPPintensities under different ITO thicknesses and metal densities, supporting theoretical predictions. In optical Tamm states (OTS), SP modes showed a higher amplification factor (1.68) than TP modes (0.83). It is used in the test of atmosphere, chloramphenicol and chloramphenicol aqueous solution. As a structure of surface-enhanced resonance Raman scattering (SERRS), it is sensitive. The gain ratio is in line with the amplification coefficient obtained in the ultraviolet and visible light regions. It has a positive effect on the bonding state of the oxygen element. Due to the regular signal drift phenomenon, the decomposition signal of chloramphenicol in aqueous solution can be captured. The signal difference is very small after repeated use after cleaning. Based on the Raman spectrum signals of molecules and in situ after repeated use, SERRS was carried out. Material history analysis supports theoretical predictions. This research advances optical engineering by providing insights into light-matter interaction and guiding future optical material design. In addition, we applied this technology to the detection of Chloramphenicol, which presents a promising new method for testing in aquaculture and environmental safety monitoring.
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页数:13
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