Dual-band infrared metamaterial perfect absorber for narrow-band thermal emitters

Our study introduces a metamaterial with a straightforward disk-like configuration that exhibits two prominent absorption peaks at wavelengths of 3960 and 4197 nm, with absorption of 96.3% and 94.1%, respectively. The design not only proved to be convenient for the practical fabrication, but also re...

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Veröffentlicht in:Journal of physics. D, Applied physics Applied physics, 2024-07, Vol.57 (28), p.285501
Hauptverfasser: Xuan Khuyen, Bui, Ngoc, Nguyen Van, Ngoc Dung, Dinh, Hai, Nguyen Phon, Tung, Nguyen Thanh, Son Tung, Bui, Dinh Lam, Vu, Truong Giang, Ho, Tan, Pham Duy, Chen, Liangyao, Zheng, Haiyu, Lee, YoungPak
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Sprache:eng
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Zusammenfassung:Our study introduces a metamaterial with a straightforward disk-like configuration that exhibits two prominent absorption peaks at wavelengths of 3960 and 4197 nm, with absorption of 96.3% and 94.1%, respectively. The design not only proved to be convenient for the practical fabrication, but also revealed a resilience to the changes in structural parameters. Moreover, this offers versatility across a wide range of applications, due to the polarization-independent behavior. Additionally, the investigation on thermal emission by integrating the metasurface on a spiral structured heat source has yielded a promising result. The metasurface emitter reduced the energy consumption by 35%, compared with the blackbody emitter. The emission intensity at the aforementioned wavelength is 1.75 × 10 9 and 1.8 × 10 9 W·sr −1 ·m −3 , respectively, indicating that the high potential of structure for the practical deployment in next-generation microheater of CO 2 sensors.
ISSN:0022-3727
1361-6463
DOI:10.1088/1361-6463/ad3bc7