R Wang, L Xie, S Hameed, C Wang, Y Ying - Carbon, 2018 - Elsevier
Terahertz (THz) technology has been widely utilized in fields of multiple disciplines because of its unique properties such as broadband and directivity. With existing and emerging …
Recent development of terahertz systems has created the need for new elements operating in this frequency band, ie, fast tunable devices such as varactors. Here, we present the …
A new technique for measuring the number of single walled carbon nanotubes (SWCNTs) and their concentration in a carbon nanotube layer is developed in this work. It is based on …
Wave propagation in a dielectric rod waveguide loaded with carbon nanotube (CNT) layers was studied experimentally at the wide frequency range of 75–320 GHz. Analytical …
Materials with tunable dielectric properties are highly relevant for terahertz (THz) applications. Herein, the tuning of the dielectric response of single‐walled carbon nanotube …
A number of electronic devices such as phase shifters, polarizers, modulators, and power splitters are based on tunable materials. These materials often do not meet all the …
The ability to efficiently transmit and manipulate high-frequency signals poses major challenges resulting in a lack of active and reconfigurable millimeter-wave and terahertz …
A novel phase shifter based on high impedance surface (HIS) with carbon nanotube (CNT) membrane MEMS is proposed. The CNT MEMS HIS is integrated into a dielectric rod …
The operational theme permeating most definitions of the IoT concept, is the wireless communication of networked objects, in particular, smart sensing devices and machines …