We present and demonstrate a MEMS-based tunable terahertz metamaterial (TTM) composed of inner triadius and outer electric split-ring resonator (eSRR) structures. With the aim to explore the electromagnetic responses of TTM device, different geometrical parameters are compared and discussed to optimize the suitable TTM design, including the length, radius, and height of TTM device. The height of triadius structure could be changed by using MEMS technique to perform active tunability. TTM shows the polarization-dependent and electromagnetic induced transparency (EIT) characteristics owing to the eSRR configuration. The electromagnetic responses of TTM exhibit tunable characteristics in resonance, polarization-dependent, and electromagnetical...
AbstractTerahertz metamaterial sensing (TMS) is a new interdisciplinary technology. A TMS system emp...
Scope and Method of Study: The objective of this study is to explore the fundamental physics in nove...
Hybridization induced transparency (HIT) resulting from the coupling between the material absorption...
The electromagnetically induced transparency effect of terahertz metamaterials exhibits excellent mo...
The electromagnetically induced transparency effect of terahertz metamaterials exhibits excellent mo...
This doctorate thesis focuses on the design, fabrication and experiment of reconfigurable metamateri...
This doctorate thesis focuses on the design, fabrication and experiment of reconfigurable metamateri...
Electromagnetic metamaterials have emerged as a powerful tool to tailor the electromagnetic material...
A metal–graphene metamaterial device exhibiting a tunable, electromagnetically induced transparency ...
Compared to the neighboring infrared and microwave regions, the terahertz regime is still in need of...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
The advent of metamaterials has revolutionized the ways to control electromagnetic waves. Through de...
An electromagnetically induced transparency (EIT) analog in hybrid metal–dielectric metamaterials is...
Terahertz metamaterial sensing (TMS) is a new interdisciplinary technology. A TMS system employs ter...
This paper presents and evaluates a new terahertz metamaterial absorber (MMA) for sensing applicatio...
AbstractTerahertz metamaterial sensing (TMS) is a new interdisciplinary technology. A TMS system emp...
Scope and Method of Study: The objective of this study is to explore the fundamental physics in nove...
Hybridization induced transparency (HIT) resulting from the coupling between the material absorption...
The electromagnetically induced transparency effect of terahertz metamaterials exhibits excellent mo...
The electromagnetically induced transparency effect of terahertz metamaterials exhibits excellent mo...
This doctorate thesis focuses on the design, fabrication and experiment of reconfigurable metamateri...
This doctorate thesis focuses on the design, fabrication and experiment of reconfigurable metamateri...
Electromagnetic metamaterials have emerged as a powerful tool to tailor the electromagnetic material...
A metal–graphene metamaterial device exhibiting a tunable, electromagnetically induced transparency ...
Compared to the neighboring infrared and microwave regions, the terahertz regime is still in need of...
The function of metamaterials targeted for operation at terahertz frequencies was investigated inclu...
The advent of metamaterials has revolutionized the ways to control electromagnetic waves. Through de...
An electromagnetically induced transparency (EIT) analog in hybrid metal–dielectric metamaterials is...
Terahertz metamaterial sensing (TMS) is a new interdisciplinary technology. A TMS system employs ter...
This paper presents and evaluates a new terahertz metamaterial absorber (MMA) for sensing applicatio...
AbstractTerahertz metamaterial sensing (TMS) is a new interdisciplinary technology. A TMS system emp...
Scope and Method of Study: The objective of this study is to explore the fundamental physics in nove...
Hybridization induced transparency (HIT) resulting from the coupling between the material absorption...