ELECTROMAGNETIC-FIELD REPRESENTATIONS IN UNIAXIAL BIANISOTROPIC-SEMICONDUCTOR MATERIAL BY CYLINDRICAL VECTOR WAVE-FUNCTIONS

Authors
Citation
Dj. Cheng, ELECTROMAGNETIC-FIELD REPRESENTATIONS IN UNIAXIAL BIANISOTROPIC-SEMICONDUCTOR MATERIAL BY CYLINDRICAL VECTOR WAVE-FUNCTIONS, Journal de physique. III, 7(1), 1997, pp. 1-12
Citations number
24
Categorie Soggetti
Material Science","Phsycs, Fluid & Plasmas","Physics, Applied
Journal title
ISSN journal
11554320
Volume
7
Issue
1
Year of publication
1997
Pages
1 - 12
Database
ISI
SICI code
1155-4320(1997)7:1<1:ERIUB>2.0.ZU;2-2
Abstract
Uniaxial bianisotropic-semiconductor material is a generalization of t he well-studied semiconductor material and uniaxial medium. It could b e realized by arranging chiral objects in a host semiconductor medium, with a preferred direction. This class of material probably opens up the opportunity to realize artificial intelligence in living organisms . In the present study, based on the concept of characteristic waves a nd the method of angular spectral expansion, electromagnetic held repr esentations in this class of materials are developed. The analysis ind icates that solutions of source-free Maxwell equations for uniaxial bi anisotropic-semiconductor material can be represented in sum-integral forms of cylindrical vector wave functions. Addition theorem of vector wave functions for uniaxial bianisotropic-semiconductor material can be straightforwardly derived from that of vector wave functions for is otropic medium. An application of the proposed theory in scattering is presented to show how to use these formulations in a practical way.