We present a design study of an all-polymer low loss single-mode hollow-core photonic crystal (HCPC) terahertz (THz) waveguide with dielectric bridges used as mechanical supports. By exploiting a modal-filtering effect and Brewster phenomenon, we maximize the loss discrimination between the fundamental and other higher order modes resulting in an effectively single-mode operation, though the HCPC THz waveguide is ostensibly multi-mode. Owing to the use of support bridges, which increase the propagation loss, the non-ideal HCPC THz waveguide has higher loss than an ideal one. Nonetheless, the propagation loss of the fundamental HE11 mode can still be minimized, to lower than 5 dB/m over the frequency range from 0.75 to 1.1 THz. In addition, ...
A low-loss and low-dispersive optical-fiber-like hybrid HE11 mode is developed within a wide band in...
A low-loss and low-dispersive optical-fiber-like hybrid HE11 mode is developed within a wide band 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)...
We present a novel design of low-loss single-mode flat hollow photonic crystal integrated waveguide ...
Designs of hollow-core rectangular, circular, and elliptical waveguides with inner coating of silver...
. 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...
THz is an emerging technology with many important applications in imaging and sensing, but due to la...
We use numerical simulations to design a hollowcore microstructured polymer optical fiber (HC-mPOF) ...
This work discusses both the theoretical and experimental guidance of low-loss single-mode millimetr...
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 find...
We present a novel design of low-loss single-mode flat hollow photonic crystal integrated waveguide ...
We numerically and experimentally demonstrate a broadband single-mode hollow substrate integrated wa...
A low-loss and low-dispersive optical-fiber-like hybrid HE11 mode is developed within a wide band in...
A low-loss and low-dispersive optical-fiber-like hybrid HE11 mode is developed within a wide band 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)...
We present a novel design of low-loss single-mode flat hollow photonic crystal integrated waveguide ...
Designs of hollow-core rectangular, circular, and elliptical waveguides with inner coating of silver...
. 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...
THz is an emerging technology with many important applications in imaging and sensing, but due to la...
We use numerical simulations to design a hollowcore microstructured polymer optical fiber (HC-mPOF) ...
This work discusses both the theoretical and experimental guidance of low-loss single-mode millimetr...
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 find...
We present a novel design of low-loss single-mode flat hollow photonic crystal integrated waveguide ...
We numerically and experimentally demonstrate a broadband single-mode hollow substrate integrated wa...
A low-loss and low-dispersive optical-fiber-like hybrid HE11 mode is developed within a wide band in...
A low-loss and low-dispersive optical-fiber-like hybrid HE11 mode is developed within a wide band in...
A rigorous modal solution approach, based on the numerically efficient finite-element method (FEM), ...