A rigorous full-vectorial modal solution approach based on the finite element method is used to find the propagation properties of THz waveguides. Design approaches are presented to reduce the modal loss. Design of several THz devices, including quantum cascade lasers, plasmonic waveguides, power splitters and narrow-band filters are also presented
Over the last decade, considerable research interest has peaked in realizing an efficient Terahertz ...
Today there is an increasing surge in Surface Plasmon based research and recent studies have shown t...
In the article, a very low loss terahertz (THz) photonic crystal fiber (PCF) has been proposed and i...
THz is an emerging technology with many important applications in imaging and sensing, but due to la...
The terahertz (THz) region occupies a large portion of the electromagnetic spectrum, located between...
. A rigorous full-vectorial modal solution approach based on the finite element method is used to fi...
Designing low-loss waveguides for terahertz waves is challenging as most materials are very lossy in...
A rigorous modal solution approach, based on the numerically efficient finite-element method (FEM), ...
We present a design study of an all-polymer low loss single-mode hollow-core photonic crystal (HCPC)...
In recent years plasmonic devices have become an interesting area of research due to the sub-wavelen...
Designs of hollow-core rectangular, circular, and elliptical waveguides with inner coating of silver...
The paper considers micromachined dielectric and metallic waveguides for THz applications. Analytica...
An improved design of Teflon photonic crystal fiber with a porous air-core is presented for low-loss...
An improved design of Teflon photonic crystal fiber with a porous air-core is presented for low-loss...
Abstract: Metallic band-gap structures for THz waveguide and bends have been simulated using the fin...
Over the last decade, considerable research interest has peaked in realizing an efficient Terahertz ...
Today there is an increasing surge in Surface Plasmon based research and recent studies have shown t...
In the article, a very low loss terahertz (THz) photonic crystal fiber (PCF) has been proposed and i...
THz is an emerging technology with many important applications in imaging and sensing, but due to la...
The terahertz (THz) region occupies a large portion of the electromagnetic spectrum, located between...
. A rigorous full-vectorial modal solution approach based on the finite element method is used to fi...
Designing low-loss waveguides for terahertz waves is challenging as most materials are very lossy in...
A rigorous modal solution approach, based on the numerically efficient finite-element method (FEM), ...
We present a design study of an all-polymer low loss single-mode hollow-core photonic crystal (HCPC)...
In recent years plasmonic devices have become an interesting area of research due to the sub-wavelen...
Designs of hollow-core rectangular, circular, and elliptical waveguides with inner coating of silver...
The paper considers micromachined dielectric and metallic waveguides for THz applications. Analytica...
An improved design of Teflon photonic crystal fiber with a porous air-core is presented for low-loss...
An improved design of Teflon photonic crystal fiber with a porous air-core is presented for low-loss...
Abstract: Metallic band-gap structures for THz waveguide and bends have been simulated using the fin...
Over the last decade, considerable research interest has peaked in realizing an efficient Terahertz ...
Today there is an increasing surge in Surface Plasmon based research and recent studies have shown t...
In the article, a very low loss terahertz (THz) photonic crystal fiber (PCF) has been proposed and i...