Broadband optical Ta2O5 antennas for directional emission of light

Author:

Farheen Henna1ORCID,Yan Lok-Yee2,Quiring Viktor3,Eigner Christof3ORCID,Zentgraf Thomas3ORCID,Linden Stefan2ORCID,Förstner Jens1ORCID,Myroshnychenko Viktor1ORCID

Affiliation:

1. Theoretical Electrical Engineering

2. Universität Bonn

3. Paderborn University

Abstract

Highly directive antennas with the ability of shaping radiation patterns in desired directions are essential for efficient on-chip optical communication with reduced cross talk. In this paper, we design and optimize three distinct broadband traveling-wave tantalum pentoxide antennas exhibiting highly directional characteristics. Our antennas contain a director and reflector deposited on a glass substrate, which are excited by a dipole emitter placed in the feed gap between the two elements. Full-wave simulations in conjunction with global optimization provide structures with an enhanced linear directivity as high as 119 radiating in the substrate. The high directivity is a result of the interplay between two dominant TE modes and the leaky modes present in the antenna director. Furthermore, these low-loss dielectric antennas exhibit a near-unity radiation efficiency at the operational wavelength of 780 nm and maintain a broad bandwidth. Our numerical results are in good agreement with experimental measurements from the optimized antennas fabricated using a two-step electron-beam lithography, revealing the highly directive nature of our structures. We envision that our antenna designs can be conveniently adapted to other dielectric materials and prove instrumental for inter-chip optical communications and other on-chip applications.

Funder

Deutsche Forschungsgemeinschaft

Bundesministerium für Bildung und Forschung

Horizon 2020 Framework Programme

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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