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Advances in fdtd computational electrodynamics
Advances in fdtd computational electrodynamics






advances in fdtd computational electrodynamics

Nakano, "A frequency-dependent LOD-FDTD method and its application to the analyses of plasmonic waveguide devices," IEEE Journal of Quantum Electronics, Vol. Li, "A modular implementation of dispersive materials for time-domain simulations with application to gold nanospheres at optical frequencies," Opt. Stuchly, "Simple treatment of multi-term in FDTD," IEEE Micro. Kawata, Nanophotonics with Surface Plasmons (Advances in Nano-Optics and Nano-Photonics), Elsevier, 2007.Ģ4. Vahldieck, "Electromagnetic propagation in a novel Ag nanoparticle based plasmonic structure," Opt. A., Plasmonics: Fundamentals and Applications, Springer-Verlag, 2007.Ģ2. Botros, "Electromagnetic scattering using GPU based finite difference frequency domain method," Progress In Electromagnetics Research B, Vol.

advances in fdtd computational electrodynamics

Sadeghi, "On optimization of finite-difference time-domain (FDTD) computation on heterogeneous and GPU clusters," J. Wang, "GPU-based accelerated FDTD simulations for double negative (DNG) materials applications," International conference on Microwave and Millimeter Wave Technology (ICMMT), 839-841, 2010.ġ9. Conference on Digital Audio E®ects (DAFx-10), Graz, Austria, September 6-10, 2010.ġ8. Savioja, L., Real-time 3D finite-difference time-domain simulation of low and mid frequency room acoustics, Proc. Roach, "CUDA implementation of TEz-FDTD solution of Maxwell's equations in dispersive media ," IEEE Antennas and Wireless Propagation Letters, Vol. Demir, The Finite-Difference Time-Domain Method for Electromagnetics with Matlab Simulations, SciTech Pub., 2009.ġ6. Maxfield, C., The Design Warrior's Guide to FPGAs, Elsevier, 2004.ġ5. Hagness, Computational Electrodynamics: The Finite-Difference Time-Domain Method, 3rd Ed., Artech House, Norwood, MA, 2005.ġ4. Seo, M., et al., "Nonlinear dispersive three-dimensional finite-difference time-domain analysis for photonic-crystal lasers," Opt. Ingo, W., "Finite difference time-domain simulation of electro-magnetic fields and microwave circuits," International Journal of Numerical Modelling, Vol.

advances in fdtd computational electrodynamics

Chen, J., "Application of the nearly perfectly matched layer for seismic wave propagation in 2D homogeneous isotropic media," Geophysical Prospecting, 2011, doi: 10.1111/j.ġ1. Nie, "Simulation of time modulated linear antenna arrays using the FDTD method," Progress In Electromagnetics Research, Vol. Baronas, "A comparison of finite difference schemes for computational modelling of biosensors," Nonlinear Analysis: Modelling and Control, Vol. Chen, "Development of the three dimensional unconditionally stable LOD-FDTD method," IEEE Trans. Zhang, "A finite-difference time-domain method without the Courant stability conditions," IEEE Microw. and Numerical solution of initial boundary value problems involving Maxwell's equations in isotropic media, "IEEE Trans. See, "Accurate and efficient evaluation of method of moments matrix based on a generalized analytical approach," Progress In Electromagnetics Research, Vol. Kempel, Finite Element Method for Electromagnetics: Antennas, Microwave Circuits, and Scattering Applications, Wiley-IEEE, 1998.Ĥ. Mittra, "A hybrid approach for solving coupled Maxwell and Schrödinger equations arising in the simulation of nano-devices," IEEE Antennas and Wireless Component Letters, Vol. Hofer, Microwave Circuit Modeling Using Electromagnetic Field Simulation, Artech House Inc., Norwood, MA, 2003.Ģ.








Advances in fdtd computational electrodynamics