22 May 2023 Optimized absorption performance of a terahertz single mode metamaterial for gas and liquid detection
Junzhang Zhu, Xuebo Zhang, Min Zhong
Author Affiliations +
Abstract

Metamaterial absorbers are widely used in the sensing field based on their rich resonance behaviors. So far, the applications of metamaterial absorbers in gas sensing have not been paid much attention by researchers. A single-mode narrow bandwidth THz metamaterial absorber is suggested and validated. An absorption peak is excited based on local surface polarization mode resonance and dielectric loss in the 2 to 36 THz band. In experiments, the hole array diameter R is increased, the absorption peak is increased from 0.51 to 0.66, and resonance position is moved to the high-frequency region. When the dielectric layer thickness h2 is increased, the absorption peak is increased from 0.51 to 0.57, and resonance position is moved to the low-frequency region. Similarly, when the dielectric layer thickness h3 is increased, the absorption peak is increased from 0.51 to 0.53, and resonance position is also moved to the low-frequency region. This metamaterial absorber exhibits the feasible for gas and liquid sensing.

© 2023 Society of Photo-Optical Instrumentation Engineers (SPIE)
Junzhang Zhu, Xuebo Zhang, and Min Zhong "Optimized absorption performance of a terahertz single mode metamaterial for gas and liquid detection," Journal of Nanophotonics 17(2), 026009 (22 May 2023). https://doi.org/10.1117/1.JNP.17.026009
Received: 1 December 2022; Accepted: 8 May 2023; Published: 22 May 2023
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KEYWORDS
Absorption

Terahertz radiation

Metamaterials

Liquids

Sensors

Electromagnetic metamaterials

Sensor metamaterials

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