The modal distribution of a novel elliptical hollow optical fiber is experimentally and numerically characterized. The fiber has a central elliptical air hole surrounded by a germanosilicate lanceolate ring core. Experiments reveal that the fiber behaves like a dual core waveguide and it is found that the differential group delay of each core decreases with wavelength with a PMD coefficient slope of ~10(-2) ps/m/THz. Experimental results are also compared with numerical modeling based on scanning electron microscopy images
We demonstrate a new class of hollow-core Bragg fibers that are composed of concentric cylindrical s...
We review our progress in developing, characterizing and handling hollow-core photonic bandgap fiber...
AbstractIn this paper, the bending loss and the modal field distribution (MFD) of the depressed core...
The modal distribution of a novel elliptical hollow optical fiber is experimentally and numerically ...
An elliptical hollow fiber, with a central air hole surrounded by a germanosilicate lance-shaped rin...
Polarization and modal birefringence of elliptical-core two-mode fibers are investigated. Wavelength...
We review our recent work on the modelling, fabrication and characterization of hollow-core photonic...
The first demonstration of a hollow core photonic bandgap fiber (HC-PBGF) suitable for high-rate dat...
We present a collection of modal characterization techniques based on time-of-flight, that are appli...
We propose a novel design of highly birefringent optical fiber composed of a central elliptical air ...
We report on numerical and experimental studies on the influence of cladding ring-number on the conf...
The possibility of guiding light in air has fascinated optical scientists and engineers since the da...
We review our recent progress in developing hollow core photonic bandgap fibers for high capacity da...
AbstractIn this work a comparative analysis of dispersion properties of hollow core photonic crystal...
This thesis reported on guiding principles, linear properties and conceptual design tools of inhibit...
We demonstrate a new class of hollow-core Bragg fibers that are composed of concentric cylindrical s...
We review our progress in developing, characterizing and handling hollow-core photonic bandgap fiber...
AbstractIn this paper, the bending loss and the modal field distribution (MFD) of the depressed core...
The modal distribution of a novel elliptical hollow optical fiber is experimentally and numerically ...
An elliptical hollow fiber, with a central air hole surrounded by a germanosilicate lance-shaped rin...
Polarization and modal birefringence of elliptical-core two-mode fibers are investigated. Wavelength...
We review our recent work on the modelling, fabrication and characterization of hollow-core photonic...
The first demonstration of a hollow core photonic bandgap fiber (HC-PBGF) suitable for high-rate dat...
We present a collection of modal characterization techniques based on time-of-flight, that are appli...
We propose a novel design of highly birefringent optical fiber composed of a central elliptical air ...
We report on numerical and experimental studies on the influence of cladding ring-number on the conf...
The possibility of guiding light in air has fascinated optical scientists and engineers since the da...
We review our recent progress in developing hollow core photonic bandgap fibers for high capacity da...
AbstractIn this work a comparative analysis of dispersion properties of hollow core photonic crystal...
This thesis reported on guiding principles, linear properties and conceptual design tools of inhibit...
We demonstrate a new class of hollow-core Bragg fibers that are composed of concentric cylindrical s...
We review our progress in developing, characterizing and handling hollow-core photonic bandgap fiber...
AbstractIn this paper, the bending loss and the modal field distribution (MFD) of the depressed core...