Eigenvalues in Uniform Waveguides Using Transmission Line Equivalences
Details
In recent years the rapid development in millimeter wave frequencies, fiber optics and integrated optics has made the use of arbitrary shaped dielectric waveguides more common. This arbitrariness in the geometry of waveguides makes obtaining of analytical solutions even more difficult. It is shown that with the aid of transmission line equivalences, it is possible to make an approximation to calculate the propagation constants of some uniform waveguides. The first step of the method consists in covering the waveguide with a perfectly conducting shield. Even though this screening transforms the radiation type of modes of the open waveguide into discrete spectra, the surface type modes are not affected very much. The novel approach presented is to use as eigenfunctions in series expansions of fields, solutions of a structure which has the same external conducting surface as the screened structure, but which has a transverse geometry which is preferred more, the more it resembles the optical waveguide at hand, and which at the same time admits an analytical solution as opposed to the method of using as eigenfunctions, the solutions of a homogeneously filled structure for this aim.
Autorentext
Dr. Nam k Yener has received his PhD degree in Electronics and Communication in 2000. Now he is working in Kocaeli University, Turkey as an Associate Professor. He is the author of several articles on closed waveguides and relativity theory and is a member of the Turkish Chamber of Electrical Engineers and the Optical Society of America.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783846590829
- Genre Elektrotechnik
- Auflage Aufl.
- Sprache Englisch
- Anzahl Seiten 132
- Größe H220mm x B150mm x T8mm
- Jahr 2011
- EAN 9783846590829
- Format Kartonierter Einband
- ISBN 3846590827
- Veröffentlichung 15.11.2011
- Titel Eigenvalues in Uniform Waveguides Using Transmission Line Equivalences
- Autor Nam k Yener
- Untertitel Surface Mode Propagation Constants of Optical Waveguides by Approximation via Transmission Line Equivalences
- Gewicht 215g
- Herausgeber LAP LAMBERT Academic Publishing