新しい電磁波吸収体 (New Electromagnetic Absorber Research from Electrical Engineering and Computer Science Professor Younes Ra’di Published in the Nature Communications Journal)

ad

2025-01-23 アメリカ合衆国・シラキューズ大学

シラキュース大学の電気工学・コンピュータサイエンス学部のユネス・ラーディ教授らの研究チームは、超薄型の電磁波吸収体において、帯域幅と厚さの比率を飛躍的に高める新しい設計手法を開発しました。この手法により、従来の設計では達成できなかった理論上の上限値に近い性能を持つ吸収体の実現が可能となります。この成果は、エネルギーハーベスティング、ステルス技術、通信ネットワークなどの分野での応用が期待されます。

<関連情報>

広帯域電磁波吸収を可能にするパッシブ高分散マッチングネットワーク Passive highly dispersive matching network enabling broadband electromagnetic absorption

Pardha S. Nayani,Morteza Moradi,Pooria Salami & Younes Ra’di
Nature Communications  Published:21 January 2025
DOI:https://doi.org/10.1038/s41467-025-56167-4

新しい電磁波吸収体 (New Electromagnetic Absorber Research from Electrical Engineering and Computer Science Professor Younes Ra’di Published in the Nature Communications Journal)

Abstract

In numerous applications from radio to optical frequencies including stealth and energy harvesting, there is a need to design electrically thin layers capable of perfectly absorbing electromagnetic waves over a wide bandwidth. However, a theoretical upper bound exists on the bandwidth-to-thickness ratio of metal-backed, passive, linear, and time-invariant absorbing layers. Absorbers developed to date, irrespective of their operational frequency range or material thickness, significantly underperform when compared to this upper bound, failing to exploit the full potential that passive, linear, and time-invariant systems can provide. Here, we introduce a new concept for designing ultra-thin absorbers that enables absorbing layers with a record-high bandwidth-to-thickness ratio, potentially several times greater than that of absorbers designed using conventional approaches. Absorbers designed based on this concept can achieve a bandwidth-to-thickness ratio arbitrarily close to the ultimate bound. Utilizing this concept, we design and experimentally verify an absorber yielding a very high bandwidth-to-thickness ratio.

0404情報通信
ad
ad
Follow
ad
タイトルとURLをコピーしました