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Perfect impedance matching with meta-surfaces made of ultra-thin metal films: a phenomenological approach to the ideal THz sensors

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posted on 2021-02-04, 10:22 authored by Binglei Zhang, Yang Liu, Yi Luo, Feodor Kusmartsev, Anna KusmartsevaAnna Kusmartseva
The terahertz (THz) frequency range is incredibly important as it covers electromagnetic emissions typical for biological and molecular processes. All molecules emit THz waves in a unique fingerprint pattern, although the intensity of such signals is usually too weak to be detected. To address the efficiency gap in existing THz devices it is extremely important to create surfaces with perfect anti-reflection properties. Although metals are absolutely reflective, here we show both theoretically and experimentally that by constructing meta-surfaces made of a superposition of ultra-thin metallic nano-films (a couple of nanometres thick) and oxide layers a unique property of perfect transmission and impedance matching may be realised. The perfect transmission rates can be as high as 100% and it may be achieved in both optical and THz regimes. The predicted effect has been observed for numerous meta-surfaces of different compositions. The effect found here is expected to impact the renewable energies sectors, optoelectronic and telecommunication industries, accelerating the arrival of the sensors for the new 6G-technology. The phenomenon is highly relevant to all scientific fields where minimising electromagnetic losses through reflection is important.

History

School

  • Science

Department

  • Physics

Published in

Materials

Volume

13

Issue

23

Publisher

MDPI

Version

  • VoR (Version of Record)

Rights holder

© The authors

Publisher statement

This is an Open Access Article. It is published by MDPI under the Creative Commons Attribution 4.0 International Licence (CC BY 4.0). Full details of this licence are available at: https://creativecommons.org/licenses/by/4.0/

Acceptance date

2020-11-20

Publication date

2020-11-28

Copyright date

2020

ISSN

1996-1944

eISSN

1996-1944

Language

  • en

Depositor

Dr Anna Kusmartseva. Deposit date: 2 February 2021

Article number

5417

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