A systematic conformal finite-difference time-domain (FDTD) technique for the simulation of arbitrarily curved interfaces between dielectrics
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[1] Tatsuo Itoh,et al. FDTD analysis of dielectric resonators with curved surfaces , 1997 .
[2] S. Gedney,et al. Numerical stability of nonorthogonal FDTD methods , 2000 .
[3] A. Cangellaris,et al. Effective permittivities for second-order accurate FDTD equations at dielectric interfaces , 2001, IEEE Microwave and Wireless Components Letters.
[4] R. Mittra,et al. A conformal finite difference time domain technique for modeling curved dielectric surfaces , 2001, IEEE Microwave and Wireless Components Letters.
[5] Allen Taflove,et al. Computational Electrodynamics the Finite-Difference Time-Domain Method , 1995 .
[6] Allen Taflove,et al. Finite-difference time-domain modeling of curved surfaces (EM scattering) , 1992 .
[7] C. H. Chan,et al. A vertex-based finite-volume time-domain method for analyzing waveguide discontinuities , 1993, IEEE Microwave and Guided Wave Letters.
[8] Alain Bossavit,et al. Yee-like schemes on staggered cellular grids: a synthesis between FIT and FEM approaches , 2000 .
[9] Jiayuan Fang,et al. A locally conformed finite-difference time-domain algorithm of modeling arbitrary shape planar metal strips , 1993 .
[10] Yanfen Hao,et al. Analyzing electromagnetic structures with curved boundaries on Cartesian FDTD meshes , 1998 .
[11] N. Madsen. Divergence preserving discrete surface integral methods for Maxwell's curl equations using non-orthogonal unstructured grids , 1995 .