Dynamic phase-change metafilm absorber for strong designer modulation of visible light

Author:

Kim Sun-Je1,Yun Hansik1,Choi Sungwook2,Yun Jeong-Geun1,Park Kyungsoo2,Jeong Sun Jae2,Lee Seung-Yeol3,Lee Yohan1,Sung Jangwoon1,Choi Chulsoo1,Hong Jongwoo1,Lee Yong Wook2,Lee Byoungho1

Affiliation:

1. Inter-University Semiconductor Research Center and School of Electrical and Computer Engineering, Seoul National University, Gwanakro 1, Gwanak-Gu, Seoul, 08826, Republic of Korea

2. Interdisciplinary Program of Biomedical Mechanical & Electrical Engineering and School of Electrical Engineering, Pukyong National University, Yongso-ro 45, Nam-Gu, Busan, 48513, Republic of Korea

3. School of Electronics Engineering, College of IT Engineering, Kyungpook National University, Daehakro 80, Buk-gu, Daegu, 702-701, Republic of Korea

Abstract

AbstractEffective dynamic modulation of visible light properties has been significantly desired for advanced imaging and sensing technologies. In particular, phase-change materials have attracted much attention as active material platforms owing to their broadband tunability of optical dielectric functions induced by the temperature-dependent phase-changes. However, their uses for visible light modulators are still limited to meet multi-objective high performance owing to the low material quality factor and active tunability in the visible regime. Here, a design strategy of phase-change metafilm absorber is demonstrated by making the use of the material drawbacks and extending design degree of freedom. By engineering tunability of effective anisotropic permittivity tensor of VO2-Ag metafilm around near-unity absorption conditions, strong dynamic modulation of reflection wave is achieved with near-unity modulation depth at desired wavelength regions without sacrificing bandwidth and efficiency. By leveraging effective medium theory of metamaterial and coupled mode theory, the intuitive design rules and theoretical backgrounds are suggested. It is also noteworthy that the dynamic optical applications of intensity modulation, coloring, and polarization rotation are enabled in a single device. By virtue of ultrathin flat configuration of a metafilm absorber, design extensibility of reflection spectrum is also verified. It is envisioned that our simple and powerful strategy would play a robust role in development of miniaturized light modulating pixels and a variety of photonic and optoelectronic applications.

Funder

National Research Foundation of Korea

MSIT

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials,Biotechnology

Reference132 articles.

1. Active directional switching of surface plasmon polaritons using a phase transition material;Sci. Rep.,2017

2. Beam switching and bifocal zoom lensing using active plasmonic metasurfaces;Light Sci. Appl.,2017

3. Ultracompact meta-pixels for high colour depth generation using a bi-layered hybrid metasurface;Sci. Rep.,2019

4. Metasurfaces based on phase-change material as a reconfigurable platform for multifunctional devices;Materials,2017

5. Thermal camouflage based on the phase-changing material GST;Light Sci. Appl.,2018

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