Discussions have been made of the electromagnetic wave propagation through optical fibers of elliptical and circular cross-sections with the loadings of conducting sheath helix at the core-clad interface with particular orientations. In both geometrical situations, the core section of fiber is assumed to be composed of chiral nihility medium, and the clad remains linear, homogeneous, isotropic, and nonmagnetic dielectric. Dispersion relations are deduced for both fiber structures, followed by the analysis of dispersion features considering a few low-order EH modes. Furthermore, the effects of conducting helix pitch angle on the features of wave propagation are also discussed
In this contribution, the full-wave equivalent circuit and the discrete mode matching (DMM) method a...
Abstract—A completely analytical computation of the electromag-netic field produced by an optical fi...
Abstract—Tape-helix transmission lines and helical coils have impor-tant applications in communicati...
Abstract- Optical fibers are structures that are typically designed to transmit energy along a speci...
Abstract—The paper presents the electromagnetic (EM) wave propagation in cylindrical optical fibers ...
We analytically present the dispersion equation of an asymmetric three-layered chirowaveguides, in w...
This thesis addresses the effects of chirality and nonlinearity in fiber optics. Most photonic appli...
An isotropic chiral medium is a circularly birefringent medium where both optical rotation and circu...
Abstract The dispersion equation of an asymmetric three-layer slab waveguide, in which all layers ar...
Dispersion and loss properties of hollow core tube fibers with elliptical cross section are numerica...
The general characteristic equation is derived for the helically cladded step-index optical fiber. T...
This dissertation is an investigation of electromagnetic scattering from planar, spherical, and cyli...
Recent experiments (Kopp et al 2007 J. Opt. Soc. Am. B 24 A48) have demonstrated that the polarizati...
A number of new approaches to the understanding of light wave propagation in cylindrical waveguides ...
Based on the method of transfer matrices for cylindrical waves, an analytical technique for calculat...
In this contribution, the full-wave equivalent circuit and the discrete mode matching (DMM) method a...
Abstract—A completely analytical computation of the electromag-netic field produced by an optical fi...
Abstract—Tape-helix transmission lines and helical coils have impor-tant applications in communicati...
Abstract- Optical fibers are structures that are typically designed to transmit energy along a speci...
Abstract—The paper presents the electromagnetic (EM) wave propagation in cylindrical optical fibers ...
We analytically present the dispersion equation of an asymmetric three-layered chirowaveguides, in w...
This thesis addresses the effects of chirality and nonlinearity in fiber optics. Most photonic appli...
An isotropic chiral medium is a circularly birefringent medium where both optical rotation and circu...
Abstract The dispersion equation of an asymmetric three-layer slab waveguide, in which all layers ar...
Dispersion and loss properties of hollow core tube fibers with elliptical cross section are numerica...
The general characteristic equation is derived for the helically cladded step-index optical fiber. T...
This dissertation is an investigation of electromagnetic scattering from planar, spherical, and cyli...
Recent experiments (Kopp et al 2007 J. Opt. Soc. Am. B 24 A48) have demonstrated that the polarizati...
A number of new approaches to the understanding of light wave propagation in cylindrical waveguides ...
Based on the method of transfer matrices for cylindrical waves, an analytical technique for calculat...
In this contribution, the full-wave equivalent circuit and the discrete mode matching (DMM) method a...
Abstract—A completely analytical computation of the electromag-netic field produced by an optical fi...
Abstract—Tape-helix transmission lines and helical coils have impor-tant applications in communicati...