DocumentCode
1899535
Title
An explicit MOT-TDVIE scheme for analyzing electromagnetic field interactions on nonlinear scatterers
Author
Ulku, H. Arda ; Bin Sayed, Sadeed ; Bagci, Hakan
Author_Institution
Div. of Comput., Electr., & Math. Sci. & Eng., King Abdullah Univ. of Sci. & Technol. (KAUST), Thuwal, Saudi Arabia
fYear
2015
fDate
2-5 Feb. 2015
Firstpage
101
Lastpage
103
Abstract
An explicit marching on-in-time (MOT) based time domain electric field volume integral equation (TDVIE) solver for characterizing electromagnetic wave interactions on scatterers with nonlinear material properties is proposed. Discretization of the unknown electric field intensity and flux density is carried out by half and full Schaubert-Wilton-Glisson basis functions, respectively. Coupled system of spatially discretized TDVIE and the nonlinear constitutive relation between the field intensity and the flux density is integrated in time to compute the samples of the unknowns. An explicit PE(CE)m scheme is used for this purpose. Explicitness allows for "easy" incorporation of the nonlinearity as a function only to be evaluated on the right hand side of the coupled system of equations. A numerical example that demonstrates the applicability of the proposed MOT scheme to analyzing electromagnetic interactions on Kerr-nonlinear scatterers is presented.
Keywords
electric field integral equations; electric fields; electromagnetic wave scattering; materials properties; time-domain analysis; Kerr-nonlinear scatterers; PE(CE)m scheme; Schaubert-Wilton-Glisson basis functions; discretization; electric field intensity; electromagnetic field interactions; electromagnetic wave interactions; explicit MOT-TDVIE scheme; flux density; marching on-in-time; nonlinear material properties; time domain electric field volume integral equation solver; Dielectrics; Electric fields; Electromagnetic scattering; Equations; Integral equations; Mathematical model; Time-domain analysis; Kerr nonlinearity; explicit solver; marching on-in-time (MOT); transient analysis; volume integral eqaution;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Electromagnetics (ICCEM), 2015 IEEE International Conference on
Conference_Location
Hong Kong
Type
conf
DOI
10.1109/COMPEM.2015.7052570
Filename
7052570
Link To Document