中文版 | English
Title

Hierarchical Conical Metasurfaces as Ultra-Broadband Perfect Absorbers from Visible to Far-Infrared Regime

Author
Corresponding AuthorWang, Min; Xu, Shaolin
Publication Years
2023-10-01
DOI
Source Title
ISSN
1616-301X
EISSN
1616-3028
Abstract
["Wideband perfect absorbers are widely demanded for various applications, including efficient photodetection, radiation cooling. However, achieving perfect absorption across an extensive range of wavelengths on engraved structured substrate remains a challenge due to the complex light responses. It presents a hierarchical conical metasurface that demonstrates distinct perfect absorption from visible to far-infrared range (0.4-16 mu m), which is composed of surface-engraved high aspect ratio nanogratings on microcones. The perfect absorption in the typical reststrahlen band of 4H-SiC primarily relies on a light-trapping-enhanced surface phonon polaritons (SPhPs) mechanism, where the microcones effectively confine and enhance the SPhPs excited by the nanogratings through light trapping. Outside the reststrahlen band, the dominant mechanism for light antireflection is the light trapping of microcones assisted by nanogratings, which act as an equivalent antireflection layer. The hierarchical cones exhibit exceptional broadband performance, achieving an average absorptance of 98% over the spectrum of 0.4-16 mu m with wide-angle feasibility, and are fabricated using one-step ultrafast-laser ablation with ring-shaped vector beams. Notably, the hierarchical cones can be applied to various materials, showing significant potential for use in photodetectors.","Wideband perfect absorbers are essential for photodetection and radiation cooling. In this paper, a novel hierarchical conical metasurface is introduced that achieves perfect absorption from visible to far-infrared wavelengths (0.4-16 mu m). Through the integration of surface-engraved nanogratings on microcones, the underlying mechanism, including surface phonon polaritons and light trapping, is examined. This technology holds significant promise for photodetection applications.image"]
Keywords
URL[Source Record]
Indexed By
Language
English
Important Publications
NI Journal Papers
SUSTech Authorship
First ; Corresponding
Funding Project
J.H. and K. X. contributed equally to this work. This work was financially supported by the National Natural Science Foundation of China (Grant No. 52375438) and Shenzhen Science and Technology Programs (Grant No. JCYJ20220818100408019, JSGG202208311014010[52375438] ; National Natural Science Foundation of China["JCYJ20220818100408019","JSGG20220831101401003","JSGG20210802154007021","KQTD20170810110250357"]
WOS Research Area
Chemistry ; Science & Technology - Other Topics ; Materials Science ; Physics
WOS Subject
Chemistry, Multidisciplinary ; Chemistry, Physical ; Nanoscience & Nanotechnology ; Materials Science, Multidisciplinary ; Physics, Applied ; Physics, Condensed Matter
WOS Accession No
WOS:001090482300001
Publisher
ESI Research Field
MATERIALS SCIENCE
Data Source
Web of Science
Citation statistics
Document TypeJournal Article
Identifierhttp://kc.sustech.edu.cn/handle/2SGJ60CL/582814
DepartmentDepartment of Mechanical and Energy Engineering
工学院_深港微电子学院
Affiliation
1.Southern Univ Sci & Technol, Dept Mech & Energy Engn, 1088 Xueyuan Ave, Shenzhen 518055, Peoples R China
2.Southern Univ Sci & Technol, Sch Microelect, 1088 Xueyuan Ave, Shenzhen 518055, Peoples R China
First Author AffilicationDepartment of Mechanical and Energy Engineering
Corresponding Author AffilicationSUSTech Institute of Microelectronics;  Department of Mechanical and Energy Engineering
First Author's First AffilicationDepartment of Mechanical and Energy Engineering;  SUSTech Institute of Microelectronics
Recommended Citation
GB/T 7714
Hu, Jin,Xu, Kang,Huang, Peilin,et al. Hierarchical Conical Metasurfaces as Ultra-Broadband Perfect Absorbers from Visible to Far-Infrared Regime[J]. ADVANCED FUNCTIONAL MATERIALS,2023.
APA
Hu, Jin,Xu, Kang,Huang, Peilin,Wang, Min,Xu, Shaolin,&Wei, Qi-Huo.(2023).Hierarchical Conical Metasurfaces as Ultra-Broadband Perfect Absorbers from Visible to Far-Infrared Regime.ADVANCED FUNCTIONAL MATERIALS.
MLA
Hu, Jin,et al."Hierarchical Conical Metasurfaces as Ultra-Broadband Perfect Absorbers from Visible to Far-Infrared Regime".ADVANCED FUNCTIONAL MATERIALS (2023).
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