Engineering metamaterials with tunable resonances are of great importance for improving the functionality and flexibility of terahertz (THz) systems. An ongoing challenge in THz science and technology is to create large-area active metamaterials as building blocks to enable efficient and precise control of THz signals. Here, an active metamaterial device based on enhancement-mode transparent amorphous oxide thin-film transistor arrays for THz modulation is demonstrated. Analytical modelling based on full-wave techniques and multipole theory exhibits excellent consistent with the experimental observations and reveals that the intrinsic resonance mode at 0.75 THz is dominated by an electric response. The resonant behavior can be effectively t...
We present an experimental study of ultra-thin tunable THz absorbers based on MEMS-driven metamateri...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
Scope and Method of Study: The objective of this study is to explore the fundamental physics in nove...
Electromagnetic metamaterials have emerged as a powerful tool to tailor the electromagnetic material...
This thesis describes a method for terahertz (THz) modulation using active metamaterials. At optical...
We present a polarization-independent metamaterial design for the construction of electrically tunab...
Compared to the neighboring infrared and microwave regions, the terahertz regime is still in need of...
Optoelectronic terahertz modulators, operated by actively tuning metamaterial, plasmonic resonator s...
Terahertz metamaterials for broadband, high modulation depth modulating, and tunable dual-band absor...
The construction of a device that consists of a semiconductor substrate with an array of split-ring ...
A metal–graphene metamaterial device exhibiting a tunable, electromagnetically induced transparency ...
Terahertz metamaterial plays a significant role in the development of imaging, sensing, and communic...
One of the important steps towards practical application of the metamaterials is the implementation ...
This book covers the theoretical background and experimental methods for engineers and physicist to ...
We demonstrate fast electrical modulation of freely propagating terahertz waves at room temperature ...
We present an experimental study of ultra-thin tunable THz absorbers based on MEMS-driven metamateri...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
Scope and Method of Study: The objective of this study is to explore the fundamental physics in nove...
Electromagnetic metamaterials have emerged as a powerful tool to tailor the electromagnetic material...
This thesis describes a method for terahertz (THz) modulation using active metamaterials. At optical...
We present a polarization-independent metamaterial design for the construction of electrically tunab...
Compared to the neighboring infrared and microwave regions, the terahertz regime is still in need of...
Optoelectronic terahertz modulators, operated by actively tuning metamaterial, plasmonic resonator s...
Terahertz metamaterials for broadband, high modulation depth modulating, and tunable dual-band absor...
The construction of a device that consists of a semiconductor substrate with an array of split-ring ...
A metal–graphene metamaterial device exhibiting a tunable, electromagnetically induced transparency ...
Terahertz metamaterial plays a significant role in the development of imaging, sensing, and communic...
One of the important steps towards practical application of the metamaterials is the implementation ...
This book covers the theoretical background and experimental methods for engineers and physicist to ...
We demonstrate fast electrical modulation of freely propagating terahertz waves at room temperature ...
We present an experimental study of ultra-thin tunable THz absorbers based on MEMS-driven metamateri...
Toroidal modes are unique type of electromagnetic excitations that have characteristic features diff...
Scope and Method of Study: The objective of this study is to explore the fundamental physics in nove...