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Tailoring a Plasmonic Topological Architecture for a Hyperspectral Resolution Pyroelectric Detector

delete2026-04-13
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PRE
AI
Z
Ziming Wang
H
Haichao Li
J
Jiawei Zhou
J
Junhao Li
J
Jun Pang
J
Jiacheng Yin
R
Ruoqian Gao *
李晓峰 (Xiaofeng Li) *
X
Xiaoyi Liu *
DOI:10.1021/acsnano.5c22750delete
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Abstract

Abstract

En 中文
Near-infrared waveband, especially in 1100–1300 nm, has extremely high spectral information density and attracts enormous interest in the areas of photodetection and spectroscopy. However, achieving hyperspectral resolution detection in this band has been a long-standing challenge owing to the restriction and interference of bandgaps in common semiconductor materials. Additionally, micrometer-scale thickness of the multifilm filter will also introduce extra complexity to the detection system. Herein, we tailor a plasmonic topological architecture covering a pyroelectric detector, which can excite a special type of surface lattice resonances and consequently generate excellent narrowband characteristics in the vicinity of 1100 nm. Merely relying on tens of nanometers of thickness of the topological layer, the full width at half-maximum of detector response can be as low as 1 nm with a Q factor of 1168, far surpassing the level of ordinary plasmonic metasurfaces. Furthermore, the wavelength and width of its response peak can be continuously engineered by controlling the period and orientation angle of the architectures, while its response speed is also improved significantly with the assistance of a plasmonic topological layer. Our work provides a concise and effective strategy to develop hyperspectral resolution photodetectors without inherent constraints of materials and wavebands.
Keywords:
Layers
Metasurfaces
Plasmonics
Quantum mechanics
Sensors
plasmonic topological architecture
surface lattice resonances
hyperspectral resolution detection
comprehensive tunability
pyroelectric photodetector

Journal

ACS Nano cover
ACS Nano
IF:
16
Papers:
2.6W
Citations:
25.6W

Organization

S
soochow university
Scholars:
1.1W
Papers: 4.2K
Citations: 5
C
chinese academy of sciences
Scholars:
55.3W
Papers: 44.6W
Citations: 704