The electromagnetic properties of structures with spatially periodic distributed graded refractive index were investigated in the terahertz frequency range. The band structure and electromagnetic response of material with harmonically distributed refractive index were calculated and analyzed. The analytical expressions for frequencies of the first and second bandgap are derived. 3D printed gyroid based architectures were proven to be harmonically graded refractive index structures with designed bandgaps in THz frequency ranges. The transmission coefficient of thermoplastic polyurethane-based samples were experimentally measured in the frequency range 100-500 GHz and compared with theoretical results. Due to losses in the real world produced samples, the predicted response is significantly dumped in the terahertz range and only traces of band gaps are experimentally observed. This funding paves the way toward a new generation of 3D printed THz components for gradient-index optics applications.

Terahertz optics of materials with spatially harmonically distributed refractive index

Ronca A;Lavorgna M;Xia H;
2020

Abstract

The electromagnetic properties of structures with spatially periodic distributed graded refractive index were investigated in the terahertz frequency range. The band structure and electromagnetic response of material with harmonically distributed refractive index were calculated and analyzed. The analytical expressions for frequencies of the first and second bandgap are derived. 3D printed gyroid based architectures were proven to be harmonically graded refractive index structures with designed bandgaps in THz frequency ranges. The transmission coefficient of thermoplastic polyurethane-based samples were experimentally measured in the frequency range 100-500 GHz and compared with theoretical results. Due to losses in the real world produced samples, the predicted response is significantly dumped in the terahertz range and only traces of band gaps are experimentally observed. This funding paves the way toward a new generation of 3D printed THz components for gradient-index optics applications.
2020
Istituto per i Polimeri, Compositi e Biomateriali - IPCB
Inglese
13
1
11
11
http://www.scopus.com/record/display.url?eid=2-s2.0-85096239162&origin=inward
Sì, ma tipo non specificato
terahertz bandgap
graded index materials
harmonically distributed refractive index
Internazionale
Elettronico
8
info:eu-repo/semantics/article
262
Bychanok, D; Gorokhov, G; Plyushch, A; Ronca, A; Lavorgna, M; Xia, H; Lamberti, P; Kuzhir, P
01 Contributo su Rivista::01.01 Articolo in rivista
open
   GRAPHENE REINFORCE COMPOSITES FOR 3D PRINTING TECHNOLOGY
   3D - PRINTGRAPH
   H2020
   705875
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/393190
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