Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group
  • Current Optics and Photonics
  • Vol. 5,
  • Issue 2,
  • pp. 134-140
  • (2021)

Broadband Phase-change Metagrating Design for Efficient Active Reflection Steering

Open Access Open Access

Abstract

In this paper, I introduce a novel design method of a high performance nanophotonic beam deflector providing broadband operation, large active tunability, and signal efficiency, simultaneously. By combining thermo-optically tunable vanadium dioxide nano-ridges and a metallic mirror, reconfigurable local optical phase of reflected diffraction beams can be engineered in a desired manner over broad bandwidth. The active metagrating deflectors are systematically designed for tunable deflection of reflection beams according to the thermal phase-change of vanadium dioxide nano-ridges. Moreover, by multiplexing the phase-change supercells, a robust design of actively tunable beam splitter is also verified numerically. It is expected that the proposed intuitive and simple design method would contribute to development of next-generation optical interconnects and spatial light modulators with high performances. The author also envisions that this study would be fruitful for modern holographic displays and three-dimensional depth sensing technologies.

© 2021 Optical Society of Korea

PDF Article
More Like This
Realization of inversely designed metagrating for highly efficient large angle beam deflection

Taikang Ye, Dan Wu, Qinfei Wu, Xiao Wei Sun, Haowen Liang, Kai Wang, and Minghui Hong
Opt. Express 30(5) 7566-7579 (2022)

Continuous terahertz omnidirectional beam steering by dual diffraction of metagratings

Jie-Rong Cheng, Yang Yang, Sai Chen, Qi-Ye Wen, Yun-Yun Ji, Fei Fan, and Sheng-Jiang Chang
Photon. Res. 11(1) 44-54 (2023)

Cited By

Optica participates in Crossref's Cited-By Linking service. Citing articles from Optica Publishing Group journals and other participating publishers are listed here.


Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.