A rigorous modal solution approach, based on the numerically efficient finite-element method (FEM), has been used to design and characterize a photonic crystal fiber (PCF) with a porous air core, which has the potential for use for low-loss guidance of terahertz (THz) waves. Here, for the first time, it is reported that a large fraction of the power that is also well confined in the waveguide can be guided in the low-loss air holes, thus to reduce the overall modal loss. This novel PCF design can readily be fabricated by use of a range of techniques including stack-and-draw, extrusion, and drilling
In the article, a very low loss terahertz (THz) photonic crystal fiber (PCF) has been proposed and i...
In this paper, a high sensitivity, polarization preserving photonic crystal fiber (PCF), based on ci...
A thorough modal characterization, centred on the full vectorial finite element method (FEM) has bee...
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...
A novel, rectangle-based, porous-core photonic crystal fiber (PCF) has been modeled for the efficien...
In this letter, authors have proposed a circular structured photonic crystal fiber for low-loss tera...
In this paper, an extremely low loss hybrid hexagonal porous core and octagonally structured circul...
Modal solutions for metal-coated defect-core photonic crystal fiber (PCF) with a central air-hole ha...
. A rigorous full-vectorial modal solution approach based on the finite element method is used to fi...
Research Article published by Optical Society of America Vol.56,(No 4)In this paper, we present the ...
We propose a novel class of optical fiber with a porous transverse cross-section that is created by ...
A rigorous full-vectorial modal solution approach based on the finite element method is used to find...
836-841In this paper, an extremely low loss hybrid hexagonal porous core and octagonally structured ...
In this letter we present a novel slotted core fiber incorporating a slotted cladding for the terahe...
In the article, a very low loss terahertz (THz) photonic crystal fiber (PCF) has been proposed and i...
In this paper, a high sensitivity, polarization preserving photonic crystal fiber (PCF), based on ci...
A thorough modal characterization, centred on the full vectorial finite element method (FEM) has bee...
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...
A novel, rectangle-based, porous-core photonic crystal fiber (PCF) has been modeled for the efficien...
In this letter, authors have proposed a circular structured photonic crystal fiber for low-loss tera...
In this paper, an extremely low loss hybrid hexagonal porous core and octagonally structured circul...
Modal solutions for metal-coated defect-core photonic crystal fiber (PCF) with a central air-hole ha...
. A rigorous full-vectorial modal solution approach based on the finite element method is used to fi...
Research Article published by Optical Society of America Vol.56,(No 4)In this paper, we present the ...
We propose a novel class of optical fiber with a porous transverse cross-section that is created by ...
A rigorous full-vectorial modal solution approach based on the finite element method is used to find...
836-841In this paper, an extremely low loss hybrid hexagonal porous core and octagonally structured ...
In this letter we present a novel slotted core fiber incorporating a slotted cladding for the terahe...
In the article, a very low loss terahertz (THz) photonic crystal fiber (PCF) has been proposed and i...
In this paper, a high sensitivity, polarization preserving photonic crystal fiber (PCF), based on ci...
A thorough modal characterization, centred on the full vectorial finite element method (FEM) has bee...