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Near-infrared broadband absorber with film-coupled multilayer nanorods

Chen, Xingxing (author)
Gong, Hanmo (author)
Dai, Shuowei (author)
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Zhao, Ding (author)
Yang, Yuanqing (author)
Li, Qiang (author)
Qiu, Min (author)
KTH,Optik och Fotonik, OFO
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 (creator_code:org_t)
Optical Society of America, 2013
2013
English.
In: Optics Letters. - : Optical Society of America. - 0146-9592 .- 1539-4794. ; 38:13, s. 2247-2249
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Turning the surfaces of noble metals (metasurfaces) into black (highly absorptive) surfaces can be potentially applied in thermophotovoltaics, sensing, tailoring thermal emissivity, etc. Here we demonstrate an extremely broadband absorber for the 900-1600 nm wavelength range with robust high absorption efficiency. The inexpensive droplet evaporation method is implemented to create patterns of nanoparticles dispersed on a gold film spaced by a thin dielectric layer. The diversity of the complicated random stacking of the chemically synthesized gold nanorods is the major factor for the broad absorption band. Such a metamaterial absorber may pave the way for cost-effective manufacture of large-area black metasurfaces.

Keyword

Total Absorption
Gold Nanorods
Light
Surfaces
Gratings

Publication and Content Type

ref (subject category)
art (subject category)

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