TY - JOUR
T1 - Metamaterial Absorbers
T2 - From Tunable Surface to Structural Transformation
AU - Li, Weiwei
AU - Xu, Manzhang
AU - Xu, He Xiu
AU - Wang, Xuewen
AU - Huang, Wei
N1 - Publisher Copyright:
© 2022 Wiley-VCH GmbH.
PY - 2022/9/22
Y1 - 2022/9/22
N2 - Since the first demonstration, remarkable progress has been made in the theoretical analysis, structural design, numerical simulation, and potential applications of metamaterial absorbers (MAs). With the continuous advancement of novel materials and creative designs, the absorption of MAs is significantly improved over a wide frequency spectrum from microwaves to the optical regime. Further, the integration of active elements into the MA design allows the dynamical manipulation of electromagnetic waves, opening a new platform to push breakthroughs in metadevices. In the last several years, numerous efforts have been devoted to exploring innovative approaches for incorporating tunability to MAs, which is highly desirable because of the progressively increasing demand on designing versatile metadevices. Here, a comprehensive and systematical overview of active MAs with adaptive and on-demand manner is presented, highlighting innovative materials and unique strategies to precisely control the electromagnetic response. In addition to the mainstream method by manipulating periodic patterns, two additional approaches, including tailoring dielectric spacer and transforming overall structure are called back. Following this, key parameters, such as operating frequency, relative tuning range, and switching speed are summarized and compared to guide for optimum design. Finally, potential opportunities in the development of active MAs are discussed.
AB - Since the first demonstration, remarkable progress has been made in the theoretical analysis, structural design, numerical simulation, and potential applications of metamaterial absorbers (MAs). With the continuous advancement of novel materials and creative designs, the absorption of MAs is significantly improved over a wide frequency spectrum from microwaves to the optical regime. Further, the integration of active elements into the MA design allows the dynamical manipulation of electromagnetic waves, opening a new platform to push breakthroughs in metadevices. In the last several years, numerous efforts have been devoted to exploring innovative approaches for incorporating tunability to MAs, which is highly desirable because of the progressively increasing demand on designing versatile metadevices. Here, a comprehensive and systematical overview of active MAs with adaptive and on-demand manner is presented, highlighting innovative materials and unique strategies to precisely control the electromagnetic response. In addition to the mainstream method by manipulating periodic patterns, two additional approaches, including tailoring dielectric spacer and transforming overall structure are called back. Following this, key parameters, such as operating frequency, relative tuning range, and switching speed are summarized and compared to guide for optimum design. Finally, potential opportunities in the development of active MAs are discussed.
KW - active elements
KW - metamaterial absorbers
KW - origami
KW - tunable/reconfigurable absorbers
UR - http://www.scopus.com/inward/record.url?scp=85136528879&partnerID=8YFLogxK
U2 - 10.1002/adma.202202509
DO - 10.1002/adma.202202509
M3 - 文献综述
C2 - 35604541
AN - SCOPUS:85136528879
SN - 0935-9648
VL - 34
JO - Advanced Materials
JF - Advanced Materials
IS - 38
M1 - 2202509
ER -