Copyright © 2008 IEEE. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE. This material is presented to ensure timely dissemination of scholarly and technical work. Copyright and all rights therein are retained by authors or by other copyright holders. All persons copying this information are expected to adhere to the terms and constraints invoked by each author's copyright. In most cases, these works may not be reposted without the explicit permission of the copyright hol...
We propose a novel photonic bandgap fibre (PBGF) based on a square lattice cladding. The fibre prese...
We report the photonic bandgap engineering of Bragg fibers by controlling the thickness profile of t...
Hollow-core photonic bandgap fibres (PBGFs) confine light within an air-core due to photonic bandgap...
We predict the existence of a low loss bandgap in hollow-core all-silica Bragg fibers. Approaches fo...
We demonstrate a new class of hollow-core Bragg fibers that are composed of concentric cylindrical s...
A new class of hollow-core Bragg fibers composed of concentric cylindrical silica rings separated by...
We demonstrate a new class of hollow-core Bragg fibers that are composed of concentric cylindrical s...
This paper theoretically describes effective suppression of higher order modes (HOMs) in realistic l...
Copyright © 2003 IEEESmall-core holey fibers (HFs) can offer tight mode confinement, and are, theref...
We thoroughly compare the out-of-plane bandgaps generated by three realistic two-dimensional lattice...
Holey fibers with small-core dimensions relative to the optical wavelength and large air-filling fra...
We report low-loss hollow-core photonic bandgap fibers free from surface modes. They have low attenu...
Small-core holey fibers (HFs) can offer tight mode confinement, and are, therefore, attractive for h...
Abstract—We propose a new design of low-contrast all-solid bandgap fiber with low confinement and be...
We propose a novel photonic bandgap fibre (PBGF) based on a square lattice cladding. The fibre prese...
We propose a novel photonic bandgap fibre (PBGF) based on a square lattice cladding. The fibre prese...
We report the photonic bandgap engineering of Bragg fibers by controlling the thickness profile of t...
Hollow-core photonic bandgap fibres (PBGFs) confine light within an air-core due to photonic bandgap...
We predict the existence of a low loss bandgap in hollow-core all-silica Bragg fibers. Approaches fo...
We demonstrate a new class of hollow-core Bragg fibers that are composed of concentric cylindrical s...
A new class of hollow-core Bragg fibers composed of concentric cylindrical silica rings separated by...
We demonstrate a new class of hollow-core Bragg fibers that are composed of concentric cylindrical s...
This paper theoretically describes effective suppression of higher order modes (HOMs) in realistic l...
Copyright © 2003 IEEESmall-core holey fibers (HFs) can offer tight mode confinement, and are, theref...
We thoroughly compare the out-of-plane bandgaps generated by three realistic two-dimensional lattice...
Holey fibers with small-core dimensions relative to the optical wavelength and large air-filling fra...
We report low-loss hollow-core photonic bandgap fibers free from surface modes. They have low attenu...
Small-core holey fibers (HFs) can offer tight mode confinement, and are, therefore, attractive for h...
Abstract—We propose a new design of low-contrast all-solid bandgap fiber with low confinement and be...
We propose a novel photonic bandgap fibre (PBGF) based on a square lattice cladding. The fibre prese...
We propose a novel photonic bandgap fibre (PBGF) based on a square lattice cladding. The fibre prese...
We report the photonic bandgap engineering of Bragg fibers by controlling the thickness profile of t...
Hollow-core photonic bandgap fibres (PBGFs) confine light within an air-core due to photonic bandgap...