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A review of tunable photonics: Optically active materials and applications from visible to terahertz

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Abstract
The next frontier of photonics is evolving into reconfigurable platforms with tunable functions to realize the ubiquitous application. The dynamic control of optical properties of photonics is highly desirable for a plethora of applications, including optical communication, dynamic display, self-adaptive photonics, and multi-spectral camouflage. Recently, to meet the dynamic response over broad optical bands, optically active materials have been integrated with the diverse photonic platforms, typically in the dimension of micro/nanometer scales. Here, we review recent advances in tunable photonics with controlling optical properties from visible to terahertz (THz) spectral range. We propose guidelines for designing tunable photonics in conjunction with optically active materials, inherent in wavelength characteristics. In particular, we devote our review to their potential uses for five different applications: structural coloration, metasurface for flat optics, photonic memory, thermal radiation, and terahertz plasmonics. Finally, we conclude with an outlook on the challenges and prospects of tunable photonics.
Author(s)
Ko, Joo HwanYoo, Young JinLee, YubinJeong, Hyeon-HoSong, Young Min
Issued Date
2022-08
Type
Article
DOI
10.1016/j.isci.2022.104727
URI
https://scholar.gist.ac.kr/handle/local/10699
Publisher
CELL PRESS
Citation
Iscience, v.25, no.8
ISSN
2589-0042
Appears in Collections:
Department of Electrical Engineering and Computer Science > 1. Journal Articles
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