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Dielectric-resonator metasurfaces for broadband terahertz quarter- and half-wave mirrors

journal contribution
posted on 2024-11-02, 08:16 authored by Wendy Lee, Rajour Ako, Mei Xian Low, Madhu BhaskaranMadhu Bhaskaran, Sharath SriramSharath Sriram, Christophe Fumeaux, Withawat Withayachumnnankul
Polarization conversion of terahertz waves is important for applications in imaging and communications. Conventional wave plates used for polarization conversion are inherently bulky and operate at discrete wavelengths. As a substitute, we employ reflective metasurfaces composed of subwavelength resonators to obtain similar functionality but with enhanced performance. More specifically, we demonstrate low-order dielectric resonators in place of commonly used planar metallic resonators to achieve high radiation e ciencies. As a demonstration of the concept, we present firstly, a quarter-wave mirror that converts 45? incident linearly polarized waves into circularly polarized waves. Next, we present a half-wave mirror that preserves the handedness of circularly polarized waves upon reflection, and in addition, rotates linearly polarized waves by 90? upon reflection. Both metasurfaces operate with high e ciency over a measurable relative bandwidth of 49% for the quarter-wave mirror and 53% for the half-wave mirror. This broadband and high e ciency capabilities of our metasurfaces will allow to leverage maximum benefits from a vast terahertz bandwidth.

Funding

Dynamic phased array antennas for terahertz detection and ranging

Australian Research Council

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History

Journal

Optics Express

Volume

26

Issue

11

Start page

14392

End page

14406

Total pages

15

Publisher

Optical Society of America

Place published

United States

Language

English

Copyright

© 2018 Optical Society of America

Former Identifier

2006084568

Esploro creation date

2020-06-22

Fedora creation date

2018-10-25

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