We provide a preliminary study of a Graphene fractal antenna operating at THz frequencies with the opportunity to modulate the emission. There are many advantages of the fractal design, namely multiband/wideband ability, and, a smaller, lighter and simpler configuration for higher gain, that can benefit from the coupling with Graphene, the thinnest and strongest of materials exhibiting very high electrical conductivity and tunability. This paper proposes a conceptual background for the study and presents some preliminary results on the electromagnetic emission simulations undertaken.
A Preliminary Study of a Graphene Fractal Sierpinski Antenna / Boretti, A.; Rosa, L.; Blackledge, J.; Castelletto, S.. - In: IOP CONFERENCE SERIES: MATERIALS SCIENCE AND ENGINEERING. - ISSN 1757-8981. - 840:1(2020). (Intervento presentato al convegno 4th International Conference on Materials Engineering and Nano Sciences, ICMENS 2020 tenutosi a Pattaya, Thailand nel 2020) [10.1088/1757-899X/840/1/012003].
A Preliminary Study of a Graphene Fractal Sierpinski Antenna
Rosa L.;
2020
Abstract
We provide a preliminary study of a Graphene fractal antenna operating at THz frequencies with the opportunity to modulate the emission. There are many advantages of the fractal design, namely multiband/wideband ability, and, a smaller, lighter and simpler configuration for higher gain, that can benefit from the coupling with Graphene, the thinnest and strongest of materials exhibiting very high electrical conductivity and tunability. This paper proposes a conceptual background for the study and presents some preliminary results on the electromagnetic emission simulations undertaken.File | Dimensione | Formato | |
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