A graded index porous optical fiber incorporating an air-hole array featuring variable air-hole diameters and inter-hole separations is proposed, fabricated, and characterized in a view of the fiber potential applications in low-loss, low-dispersion terahertz guidance. The proposed fiber features simultaneously low modal and intermodal dispersions, as well as low loss in the terahertz spectral range. We experimentally demonstrate that graded index porous fibers exhibit smaller pulse distortion, larger bandwidth, and higher excitation efficiency when compared to fibers with uniform porosity. (C) 2015 Optical Society of Americ
Research Article published by ElsevierIn this paper, we present a porous-core circular photonic crys...
Porous fibers have been identified as a means of achieving low losses, low dispersion and high biref...
In this letter we present a novel slotted core fiber incorporating a slotted cladding for the terahe...
We demonstrate that porous fibers in addition to low loss and high confinement, have near zero dispe...
By intentionally combining the porous fiber and the air-core photonic bandgap fiber, a kind of porou...
We propose a novel class of optical fiber with a porous transverse cross-section that is created by ...
A novel graded index microstructured polymer THz fiber, whose graded index profile is achieved by a ...
In this letter, authors have proposed a circular structured photonic crystal fiber for low-loss tera...
Abstract: The experimental results confirm the low dispersion characteristics of porous fibers compa...
This Thesis reports the development of fibres to guide terahertz (THz) or T-ray radiation. It demons...
Available online 12 April 2018We present a Zeonex based highly birefringent and dispersion flattened...
Research Article published by Optical Society of America Vol.56,(No 4)In this paper, we present the ...
A rigorous modal solution approach, based on the numerically efficient finite-element method (FEM), ...
We propose a novel class of fibre with a porous core transverse crosssection that can offer a combin...
An improved design of Teflon photonic crystal fiber with a porous air-core is presented for low-loss...
Research Article published by ElsevierIn this paper, we present a porous-core circular photonic crys...
Porous fibers have been identified as a means of achieving low losses, low dispersion and high biref...
In this letter we present a novel slotted core fiber incorporating a slotted cladding for the terahe...
We demonstrate that porous fibers in addition to low loss and high confinement, have near zero dispe...
By intentionally combining the porous fiber and the air-core photonic bandgap fiber, a kind of porou...
We propose a novel class of optical fiber with a porous transverse cross-section that is created by ...
A novel graded index microstructured polymer THz fiber, whose graded index profile is achieved by a ...
In this letter, authors have proposed a circular structured photonic crystal fiber for low-loss tera...
Abstract: The experimental results confirm the low dispersion characteristics of porous fibers compa...
This Thesis reports the development of fibres to guide terahertz (THz) or T-ray radiation. It demons...
Available online 12 April 2018We present a Zeonex based highly birefringent and dispersion flattened...
Research Article published by Optical Society of America Vol.56,(No 4)In this paper, we present the ...
A rigorous modal solution approach, based on the numerically efficient finite-element method (FEM), ...
We propose a novel class of fibre with a porous core transverse crosssection that can offer a combin...
An improved design of Teflon photonic crystal fiber with a porous air-core is presented for low-loss...
Research Article published by ElsevierIn this paper, we present a porous-core circular photonic crys...
Porous fibers have been identified as a means of achieving low losses, low dispersion and high biref...
In this letter we present a novel slotted core fiber incorporating a slotted cladding for the terahe...