Graphene Based THz Electromagnetic Imaging System for the Analysis of Artworks

In this paper, a graphene-based electromagnetic imaging system working in 140-220 GHz frequency band for nonintrusive analysis of 3D artwork is presented. A single-stage high-order frequency multiplier is used to generate the signal at the transmitter module, whereas the single-stage high-order subh...

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Published inIEEE access Vol. 6; pp. 66459 - 66467
Main Authors Ver Hoeye, Samuel, Fernandez, Miguel, Vazquez, Carlos, Hadarig, Andrea I., Camblor, Rene, Alonso, Leticia, Las-Heras, Fernando
Format Journal Article
LanguageEnglish
Published Piscataway IEEE 2018
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract In this paper, a graphene-based electromagnetic imaging system working in 140-220 GHz frequency band for nonintrusive analysis of 3D artwork is presented. A single-stage high-order frequency multiplier is used to generate the signal at the transmitter module, whereas the single-stage high-order subharmonic mixer acts as a signal detector at the receiver. Both modules exploit the nonlinear response of graphene sheets excited by an incident electromagnetic wave, to generate harmonic components and mixing products of the input signals, respectively. The transmitter and the receiver modules were implemented through an additive manufacturing process. The resulting electromagnetic imaging system prototype was applied to the analysis of ceramic vessels, showing its ability to detect enclosed objects and to obtain information in cross-sectional planes. Furthermore, the geometrical parameters and filling material characterization can be obtained by processing the frequency response of the scattered field.
AbstractList In this paper, a graphene-based electromagnetic imaging system working in 140-220 GHz frequency band for nonintrusive analysis of 3D artwork is presented. A single-stage high-order frequency multiplier is used to generate the signal at the transmitter module, whereas the single-stage high-order subharmonic mixer acts as a signal detector at the receiver. Both modules exploit the nonlinear response of graphene sheets excited by an incident electromagnetic wave, to generate harmonic components and mixing products of the input signals, respectively. The transmitter and the receiver modules were implemented through an additive manufacturing process. The resulting electromagnetic imaging system prototype was applied to the analysis of ceramic vessels, showing its ability to detect enclosed objects and to obtain information in cross-sectional planes. Furthermore, the geometrical parameters and filling material characterization can be obtained by processing the frequency response of the scattered field.
Author Camblor, Rene
Fernandez, Miguel
Ver Hoeye, Samuel
Vazquez, Carlos
Alonso, Leticia
Las-Heras, Fernando
Hadarig, Andrea I.
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Snippet In this paper, a graphene-based electromagnetic imaging system working in 140-220 GHz frequency band for nonintrusive analysis of 3D artwork is presented. A...
In this paper, a graphene-based electromagnetic imaging system working in 140–220 GHz frequency band for nonintrusive analysis of 3D artwork is presented. A...
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SubjectTerms Electromagnetic radiation
Electromagnetic waveguides
Electromagnetics
Frequencies
Frequency multiplier
Frequency multipliers
Frequency response
Graphene
Harmonic analysis
Imaging
Mixers
Modules
Nonlinear response
Object recognition
Receivers
Signal detectors
stereolithography
subharmonic mixer
submillimeter wave devices
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Title Graphene Based THz Electromagnetic Imaging System for the Analysis of Artworks
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