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FDTD_codes_TE.html 2011-01-24 3.5 kB
fdtd_2D_TE_Veszt_PML_period.zip 2011-01-24 2.4 MB
fdtd_2D_TE_Veszt_PML.zip 2011-01-24 2.4 MB
fdtd_2D_TE_PML_Lorentz.zip 2011-01-24 2.5 MB
fdtd_2D_TE_PML_Lorentz_period.zip 2011-01-24 2.4 MB
TE_mode_periodic.pdf 2011-01-24 81.1 kB
TE_mode_noloss_periodic.pdf 2011-01-24 80.6 kB
TE_mode_noloss.pdf 2011-01-24 108.0 kB
TE_mode_Lorentz_periodic.pdf 2011-01-24 88.3 kB
TE_mode_Lorentz.pdf 2011-01-24 80.7 kB
TE_mode.pdf 2011-01-24 72.7 kB
fdtd_2D_TE_PML_period.zip 2011-01-24 2.4 MB
fdtd_2D_TE_PML.zip 2011-01-24 2.5 MB
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Finite Difference Time Domain (FDTD) Algorithms

The FDTD method is a powerfull numerical technique to solve the Maxwell equations.


Please cite the following papers:

1. Zs. Szabó, Gy. Kádár and J. Balázs, Simulation of Photonic Crystal Waveguides with Dispersion,
   Current Applied Physics, vol. 6, pp. 149-153, 2006.
2. Zs. Szabó, Gy. Kádár and J. Volk, Band Gaps in Photonic Crystals with Dispersion, 
   Compel, Vol. 24, No. 2, pp. 521-533, 2005.


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 Author: Zsolt Szabó

 These softwares are "as-are" and carries no warranty.  They can be used without restriction for research and education purposes. 
 Bug reports: Zsolt Szabó, szabo@evt.bme.hu

Updated 2 February, 2012.
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Acknowledgement

This work was supported by the “Magyary Zoltán” research fellowship of the Hungarian Ministry of Education and the JSPS postdoctoral fellowship offered by the Japan Society for the Promotion of Science. 

Source: readme.txt, updated 2012-11-24