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- W4310040590 abstract "Although metasurfaces have received enormous attention and are widely applied in various fields, the realization of multiple functions using a single metasurface is still rarely reported to date. In this work, we propose a novel dual-functional metasurface that can be applied as a mid-infrared narrowband thermal light source in optical gas sensing and a long-wave infrared broadband absorber in photodetection. By actively tailoring the structure and constituent materials of the metasurface, the device yields an absorptivity of over 90% from 8 µm to 14 µm, while it exhibits an emissivity of 97.4% at the center wavelength of 3.56 μm with a full width at half-maximum of 0.41 µm. Notably, the metasurface is insensitive to the incident angle under both TM- and TE-polarized light. The proposed dual-functional metasurface possesses many advantages, including a simple structure, thin thickness, angle and polarization insensitivity, and compatibility with optical devices, which are expected to simplify the existing imaging systems and improve the performance of photodetection equipment." @default.
- W4310040590 created "2022-11-30" @default.
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- W4310040590 date "2022-11-24" @default.
- W4310040590 modified "2023-10-18" @default.
- W4310040590 title "An Omnidirectional Dual-Functional Metasurface with Ultrathin Thickness" @default.
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- W4310040590 doi "https://doi.org/10.3390/ma15238378" @default.
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