Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/165049
Title: Recent advances in tunable metasurfaces: materials, design and applications
Authors: Abdelraouf, Omar A. M.
Wang, Ziyu
Liu, Hailong
Dong, Zhaogang
Wang, Qian
Ye, Ming
Wang, Renshaw Xiao
Wang, Qi Jie
Liu, Hong
Keywords: Engineering::Materials::Photonics and optoelectronics materials
Issue Date: 2022
Source: Abdelraouf, O. A. M., Wang, Z., Liu, H., Dong, Z., Wang, Q., Ye, M., Wang, R. X., Wang, Q. J. & Liu, H. (2022). Recent advances in tunable metasurfaces: materials, design and applications. ACS Nano, 16(9), 13339-13369. https://dx.doi.org/10.1021/acsnano.2c04628
Project: MOE-T2EP50120-0009
MOET2EP50120-0006
MOE-T2EP50220-0005
A18A7b0058
SC25/18-8R1804-PRJ8
A20E5c0093
A20E5c0094
A20E5c0095
C210112019
C210112044
M21K2c0116
NRF-CRP19-2017-01
NRF-CRP22-2019-0007
Journal: ACS Nano 
Abstract: Metasurfaces, a two-dimensional (2D) form of metamaterials constituted by planar meta-atoms, exhibit exotic abilities to tailor electromagnetic (EM) waves freely. Over the past decade, tremendous efforts have been made to develop various active materials and incorporate them into functional devices for practical applications, pushing the research of tunable metasurfaces to the forefront of nanophotonics. Those active materials include phase change materials (PCMs), semiconductors, transparent conducting oxides (TCOs), ferroelectrics, liquid crystals (LCs), atomically thin material,etc., and enable intriguing performances such as fast switching speed, large modulation depth, ultracompactness, and significant contrast of optical properties under external stimuli. Integration of such materials offers substantial tunability to the conventional passive nanophotonic platforms. Tunable metasurfaces with multifunctionalities triggered by various external stimuli bring in rich degrees of freedom in terms of material choices and device designs to dynamically manipulate and control EM waves on demand. This field has recently flourished with the burgeoning development of physics and design methodologies, particularly those assisted by the emerging machine learning (ML) algorithms. This review outlines recent advances in tunable metasurfaces in terms of the active materials and tuning mechanisms, design methodologies, and practical applications. We conclude this review paper by providing future perspectives in this vibrant and fast-growing research field.
URI: https://hdl.handle.net/10356/165049
ISSN: 1936-0851
DOI: 10.1021/acsnano.2c04628
Schools: School of Physical and Mathematical Sciences 
School of Electrical and Electronic Engineering 
Rights: © 2022 American Chemical Society. All rights reserved.
Fulltext Permission: none
Fulltext Availability: No Fulltext
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