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June 14, 2016, at 02:16 PM by 138.96.200.15 -
Changed line 27 from:
(:cellnr align='center':) [[Results/DGD_nonloc_Drude | More details]]
to:
(:cellnr align='center':) [[Results/DGTD_nonloc_Drude | More details]]
June 14, 2016, at 02:14 PM by 138.96.200.15 -
Changed line 27 from:
(:cellnr align='center':) [[Results/DGTD_nonloc_Drude | More details]]
to:
(:cellnr align='center':) [[Results/DGD_nonloc_Drude | More details]]
June 14, 2016, at 02:14 PM by 138.96.200.15 -
Changed line 27 from:
(:cellnr align='center':) [[Results/DGD_nonloc_Drude | More details]]
to:
(:cellnr align='center':) [[Results/DGTD_nonloc_Drude | More details]]
December 16, 2015, at 03:59 PM by 138.96.200.15 -
Changed line 67 from:
(:cell  align='center':) %width=180px% http://www-sop.inria.fr/nachos/pics/results/p_loc/bowtie3.png
to:
(:cell  align='center':) %width=200px% http://www-sop.inria.fr/nachos/pics/results/p_loc/bowtie3.png
December 16, 2015, at 03:58 PM by 138.96.200.15 -
Changed line 67 from:
(:cell  align='center':) %width=120px% http://www-sop.inria.fr/nachos/pics/results/p_loc/bowtie3.png
to:
(:cell  align='center':) %width=180px% http://www-sop.inria.fr/nachos/pics/results/p_loc/bowtie3.png
Changed line 73 from:
(:cell  align='center':)
to:
(:cell  align='center':) [[Results/DGTD_ploc | More details]]
December 16, 2015, at 03:57 PM by 138.96.200.15 -
December 16, 2015, at 03:57 PM by 138.96.200.15 -
Changed line 67 from:
(:cell  align='center':)
to:
(:cell  align='center':) %width=120px% http://www-sop.inria.fr/nachos/pics/results/p_loc/bowtie3.png
Changed lines 69-71 from:
(:cell  align='center':)
to:
(:cell  align='center':) Simulation of near-field plasmonic interactions
(:cellnr align='center':)
(:cell  align='center':) with a local approximation order DGTD method
July 22, 2015, at 01:19 PM by 193.51.208.251 -
Changed lines 72-73 from:

to:
(:tableend:)
>><<

>>frame bgcolor='white'<<
(:table border='0' align='center':)
July 22, 2015, at 01:18 PM by 193.51.208.251 -
Added line 72:
July 22, 2015, at 01:17 PM by 193.51.208.251 -
Deleted lines 68-69:
(:cell  align='center':)
(:cellnr align='center':)
July 22, 2015, at 01:16 PM by 193.51.208.251 -
Changed line 66 from:
(:cellnr align='center':) %width=170px% http://www-sop.inria.fr/nachos/pics/results/eels/eels_visu_t1.png %width=170px% http://www-sop.inria.fr/nachos/pics/results/eels/
to:
(:cellnr align='center':) %width=120px% http://www-sop.inria.fr/nachos/pics/results/eels/eels_visu_t3.png
July 22, 2015, at 01:16 PM by 193.51.208.251 -
Added lines 64-73:


(:cellnr align='center':) %width=170px% http://www-sop.inria.fr/nachos/pics/results/eels/eels_visu_t1.png %width=170px% http://www-sop.inria.fr/nachos/pics/results/eels/
(:cell  align='center':)
(:cellnr align='center':) Electron energy loss spectroscopy
(:cell  align='center':)
(:cellnr align='center':)
(:cell  align='center':)
(:cellnr align='center':) [[Results/DGTD_eels | More details]]
(:cell  align='center':)
July 22, 2015, at 01:13 PM by 193.51.208.251 -
April 30, 2015, at 07:45 PM by 88.128.80.245 -
Changed line 31 from:
(:cell  align='center':) %width=175px% http://www-sop.inria.fr/nachos/pics/results/imex/surfint=40616.png
to:
(:cell  align='center':) %width=185px% http://www-sop.inria.fr/nachos/pics/results/imex/surfint=40616.png
April 30, 2015, at 07:44 PM by 88.128.80.245 -
Changed line 31 from:
(:cell  align='center':) %width=150px% http://www-sop.inria.fr/nachos/pics/results/imex/surfint=40616.png
to:
(:cell  align='center':) %width=175px% http://www-sop.inria.fr/nachos/pics/results/imex/surfint=40616.png
April 30, 2015, at 07:42 PM by 88.128.80.245 -
Changed lines 10-22 from:
(:cellnr align='center':)%width=175px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
(:cell align='center':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_hyb_mesh.jpg %width=120px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_X_g1_L.png
(:cellnr align='center':)High-order DGTD method on
(:cell align='center':)Hybrid cubic/tetrahedral DGTD method
(:cellnr align='center':)curvilinear tetrahedral meshes
(:cell align='center':)with application to nanophotonics
(:cellnr align='center':)with application to plasmonics
(:cell align='center':)
(:cellnr align='center':)[[Results/DGTD_curvi  | More details]]
(:cell align='center':)[[Results/DGTD_hybrid | More details]]


to:
(:cellnr align='center':) %width=175px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
(:cell   align='center':) %width=170px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_hyb_mesh.jpg %width=120px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_X_g1_L.png
(:cellnr align='center':) High-order DGTD method on
(:cell   align='center':) Hybrid cubic/tetrahedral DGTD method
(:cellnr align='center':) curvilinear tetrahedral meshes
(:cell   align='center':) with application to nanophotonics
(:cellnr align='center':) with application to plasmonics
(:cell   align='center':)
(:cellnr align='center':) [[Results/DGTD_curvi  | More details]]
(:cell   align='center':) [[Results/DGTD_hybrid | More details]]
Added lines 22-39:
(:cell  align='center':)
(:cellnr align='center':) DGTD method for a non-local Drude model
(:cell  align='center':)
(:cellnr align='center':) with application to plasmonics
(:cell  align='center':)
(:cellnr align='center':) [[Results/DGD_nonloc_Drude | More details]]
(:cell  align='center':)

(:cellnr align='center':) %width=175px% http://www-sop.inria.fr/nachos/pics/results/hdg/hdg_cyl_pec.png
(:cell  align='center':) %width=150px% http://www-sop.inria.fr/nachos/pics/results/imex/surfint=40616.png
(:cellnr align='center':) Hybridized DGFD methods
(:cell  align='center':) Locally implicit DGTD methods
(:cellnr align='center':) for electromagnetics
(:cell  align='center':) for electromagnetics
(:cellnr align='center':) [[Results/HDG | More details]]
(:cell  align='center':) [[Results/DGTD_locimp | More details]]

(:cellnr align='center':)%width=200px% http://www-sop.inria.fr/nachos/pics/results/hpc/Yguide-2.png
Changed line 41 from:
(:cellnr align='center':)DGTD method for a non-local Drude model
to:
(:cellnr align='center':)Hybrid MIMD/SIMD high order DGTD solver
Changed line 43 from:
(:cellnr align='center':)with application to plasmonics
to:
(:cellnr align='center':)[[Results/HPC | More details]]
Deleted lines 44-65:
(:cellnr align='center':)[[Results/DGD_nonloc_Drude | More details]]
(:cell align='center':)



(:cellnr align='center':)%width=175px% http://www-sop.inria.fr/nachos/pics/results/hdg/hdg_cyl_pec.png
(:cell align='center':)
(:cellnr align='center':)Hybridized DGFD methods
(:cell align='center':)Locally implicit DGTD methods
(:cellnr align='center':)for electromagnetics
(:cell align='center':)for electromagnetics
(:cellnr align='center':)[[Results/HDG | More details]]
(:cell align='center':)[[Results/DGTD_locimp | More details]]



(:cellnr align='center':)%width=200px% http://www-sop.inria.fr/nachos/pics/results/hpc/Yguide-2.png
(:cell align='center':)
(:cellnr align='center':)Hybrid MIMD/SIMD high order DGTD solver
(:cell align='center':)
(:cellnr align='center':)[[Results/HPC | More details]]
(:cell align='center':)
Changed lines 58-69 from:
(:cellnr align='center':)%width=220px% http://www-sop.inria.fr/nachos/pics/results/UoB/antenna_array-mesh.jpg
(:cell align='center':)%width=160px% http://www-sop.inria.fr/nachos/pics/results/mim_structure/Hx_view4.png
(:cellnr align='center':)Light scattering by optical nanoantennas
(:cell align='center':)Light absorption by MIM structures
(:cellnr align='center':)[[Results/DGTD_optical-nanoantenna | More details]]
(:cell align='center':)[[Results/DGTD_mim | More details]]



(:cellnr align='center':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg %width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
(:cell align='center':)
to:
(:cellnr align='center':) %width=220px% http://www-sop.inria.fr/nachos/pics/results/UoB/antenna_array-mesh.jpg
(:cell   align='center':) %width=160px% http://www-sop.inria.fr/nachos/pics/results/mim_structure/Hx_view4.png
(:cellnr align='center':) Light scattering by optical nanoantennas
(:cell   align='center':) Light absorption by MIM structures
(:cellnr align='center':) [[Results/DGTD_optical-nanoantenna | More details]]
(:cell   align='center':) [[Results/DGTD_mim | More details]]

(:cellnr align='center':) %width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg %width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
(:cell   align='center':)
Changed line 68 from:
(:cell align='center':)
to:
(:cell  align='center':)
Changed line 70 from:
(:cell align='center':)
to:
(:cell  align='center':)
Changed line 72 from:
(:cell align='center':)
to:
(:cell  align='center':)
April 30, 2015, at 06:11 PM by 212.194.65.231 -
April 30, 2015, at 06:11 PM by 212.194.65.231 -
Changed lines 52-53 from:
to:
>><<
Changed lines 82-83 from:
>><<
to:
(:tableend:)
>><<
April 30, 2015, at 06:10 PM by 212.194.65.231 -
Deleted lines 51-54:
=======
(:tableend:)
>>>>>>>
>><<
April 30, 2015, at 06:09 PM by 212.194.65.231 -
Deleted line 19:
<<<<<<<
April 30, 2015, at 06:09 PM by 212.194.65.231 -
Changed lines 20-42 from:
(:tableend:)
>>
<<

(:linebreaks:)
(:linebreaks:)

!!! Applications related
results

(:linebreaks:)
(:linebreaks:)

>>frame bgcolor='white'<<
(:table border='0' align='center':)
(:cellnr align='center':)%width=220px% http:
//www-sop.inria.fr/nachos/pics/results/UoB/antenna_array-mesh.jpg
(:cell align='center':)%width=160px% http://www-sop.inria.fr/nachos/pics/results/mim_structure/Hx_view4.png
(:cellnr align='center':)Light scattering by optical nanoantennas
(:cell align='center':)Light absorption by MIM structures
(:cellnr align='center':)[[Results/DGTD_optical-nanoantenna | More details]]
(:cell align='center':)[[Results/DGTD_mim | More details]]



(:cellnr align='center':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg %width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
to:
<<<<<<<



(:cellnr align='center':)%width=195px% http://www-sop.inria.fr/nachos/pics/results/nano_nonloc_drude/2DiscClExZ.png
Changed lines 26-27 from:

(:cellnr align='center':) Realistic numerical modeling of microwave interaction
to:
(:cellnr align='center':)DGTD method for a non-local Drude model
Changed line 28 from:
(:cellnr align='center':) with biological tissues
to:
(:cellnr align='center':)with application to plasmonics
Changed line 30 from:
(:cellnr align='center':) [[Results/DGTD_bioem | More details]]
to:
(:cellnr align='center':)[[Results/DGD_nonloc_Drude | More details]]
Changed lines 32-86 from:
>><<
to:



(:cellnr align='center':)%width=175px% http://www-sop.inria.fr/nachos/pics/results/hdg/hdg_cyl_pec.png
(:cell align='center':)
(:cellnr align='center':)Hybridized DGFD methods
(:cell align='center':)Locally implicit DGTD methods
(:cellnr align='center':)for electromagnetics
(:cell align='center':)for electromagnetics
(:cellnr align='center':)[[Results/HDG | More details]]
(:cell align='center':)[[Results/DGTD_locimp | More details]]



(:cellnr align='center':)%width=200px% http://www-sop.inria.fr/nachos/pics/results/hpc/Yguide-2.png
(:cell align='center':)
(:cellnr align='center':)Hybrid MIMD/SIMD high order DGTD solver
(:cell align='center':)
(:cellnr align='center':)[[Results/HPC | More details]]
(:cell align='center':)
(:tableend:)
=======
(:tableend:)
>>>>>>>
>><<

(:linebreaks:)
(:linebreaks:)

!!! Applications related results

(:linebreaks:)
(:linebreaks:)

>>frame bgcolor='white'<<
(:table border='0' align='center':)
(:cellnr align='center':)%width=220px% http://www-sop.inria.fr/nachos/pics/results/UoB/antenna_array-mesh.jpg
(:cell align='center':)%width=160px% http://www-sop.inria.fr/nachos/pics/results/mim_structure/Hx_view4.png
(:cellnr align='center':)Light scattering by optical nanoantennas
(:cell align='center':)Light absorption by MIM structures
(:cellnr align='center':)[[Results/DGTD_optical-nanoantenna | More details]]
(:cell align='center':)[[Results/DGTD_mim | More details]]



(:cellnr align='center':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg %width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
(:cell align='center':)

(:cellnr align='center':) Realistic numerical modeling of microwave interaction
(:cell align='center':)
(:cellnr align='center':) with biological tissues
(:cell align='center':)
(:cellnr align='center':) [[Results/DGTD_bioem | More details]]
(:cell align='center':)

>><<
Deleted lines 19-51:



(:cellnr align='center':)%width=195px% http://www-sop.inria.fr/nachos/pics/results/nano_nonloc_drude/2DiscClExZ.png
(:cell align='center':)
(:cellnr align='center':)DGTD method for a non-local Drude
(:cell align='center':)
(:cellnr align='center':)model with application to plasmonics
(:cell align='center':)
(:cellnr align='center':)[[Results/DGD_nonloc_Drude | More details]]
(:cell align='center':)



(:cellnr align='center':)%width=175px% http://www-sop.inria.fr/nachos/pics/results/hdg/hdg_cyl_pec.png
(:cell align='center':)
(:cellnr align='center':)Hybridized DGFD methods
(:cell align='center':)Locally implicit DGTD methods
(:cellnr align='center':)for electromagnetics
(:cell align='center':)for electromagnetics
(:cellnr align='center':)[[Results/HDG | More details]]
(:cell align='center':)[[Results/DGTD_locimp | More details]]



(:cellnr align='center':)%width=200px% http://www-sop.inria.fr/nachos/pics/results/hpc/Yguide-2.png
(:cell align='center':)
(:cellnr align='center':)Hybrid MIMD/SIMD high order
(:cell align='center':)
(:cellnr align='center':)DGTD solver
(:cell align='center':)
(:cellnr align='center':)[[Results/HPC | More details]]
(:cell align='center':)
April 30, 2015, at 06:08 PM by jviquera - Alignement des cases
Changed lines 10-11 from:
(:cellnr align='center' width='10%':)%width=175px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
(:cell align='center' width='10%':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_hyb_mesh.jpg %width=120px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_X_g1_L.png
to:
(:cellnr align='center':)%width=175px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
(:cell align='center':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_hyb_mesh.jpg %width=120px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_X_g1_L.png
Changed lines 20-25 from:
(:tableend:)

(:table border
='0' align='center':)
(:cellnr align='center' width='10%':)%width=195px% http:
//www-sop.inria.fr/nachos/pics/results/nano_nonloc_drude/2DiscClExZ.png
(:cell align='center' width='10%':)
(:cellnr align='center':)DGTD method for a non-local Drude model
to:



(:cellnr align='center':)%width=195px% http://www-sop.inria.fr/nachos/pics/results/nano_nonloc_drude/2DiscClExZ.png
Changed line 25 from:
(:cellnr align='center':)with application to plasmonics
to:
(:cellnr align='center':)DGTD method for a non-local Drude
Added lines 27-28:
(:cellnr align='center':)model with application to plasmonics
(:cell align='center':)
Changed lines 31-35 from:
(:tableend:)

(:table border
='0' align='center':)
(:cellnr align='center' width='10%':)%width=175px% http://www-sop.inria.fr/nachos/pics/results/hdg/hdg_cyl_pec.png
(:cell align='center' width='10%
':)
to:



(:cellnr align='center':)%width=175px% http://www-sop.inria.fr/nachos/pics/results/hdg/hdg_cyl_pec.png
(:cell align='center':)
Changed lines 42-47 from:
(:tableend:)

(:table border
='0' align='center':)
(:cellnr align='center' width='10%':)%width=200px% http:
//www-sop.inria.fr/nachos/pics/results/hpc/Yguide-2.png
(:cell align='center' width='10%':)
(:cellnr align='center':)Hybrid MIMD/SIMD high order DGTD solver
to:



(:cellnr align='center':)%width=200px% http://www-sop.inria.fr/nachos/pics/results/hpc/Yguide-2.png
Changed line 47 from:
(:cellnr align='center':)[[Results/HPC | More details]]
to:
(:cellnr align='center':)Hybrid MIMD/SIMD high order
Added lines 49-52:
(:cellnr align='center':)DGTD solver
(:cell align='center':)
(:cellnr align='center':)[[Results/HPC | More details]]
(:cell align='center':)
Changed lines 66-67 from:
(:cellnr align='center' width='10%':)%width=220px% http://www-sop.inria.fr/nachos/pics/results/UoB/antenna_array-mesh.jpg
(:cell align='center' width='10%':)%width=160px% http://www-sop.inria.fr/nachos/pics/results/mim_structure/Hx_view4.png
to:
(:cellnr align='center':)%width=220px% http://www-sop.inria.fr/nachos/pics/results/UoB/antenna_array-mesh.jpg
(:cell align='center':)%width=160px% http://www-sop.inria.fr/nachos/pics/results/mim_structure/Hx_view4.png
Changed lines 72-86 from:
(:tableend:)

(
:linebreaks:)
(:linebreaks:)

(:table border='0' align='center':)
(:cellnr align='center' width
='10%':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg\\
%width=170px% http
://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
(:
cell align='left' width='10%':)
(:tableend:)
Realistic numerical modeling of microwave interaction \\
with biological tissues
[[Results/DGTD_bioem | More details]]
>><<
to:



(:cellnr align='center':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg %width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
(:cell align='center':)

(:cellnr align='center':) Realistic numerical modeling of microwave interaction
(:cell align
='center':)
(:cellnr align='center':) with biological tissues
(
:cell align='center':)
(:cellnr align
='center':) [[Results/DGTD_bioem | More details]]
(:cell align='center':)
>><<
April 30, 2015, at 05:34 PM by 212.194.65.231 -
April 30, 2015, at 05:34 PM by 212.194.65.231 -
Changed lines 76-77 from:
(:cellnr align='center' width='10%':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg
(:cell align='left':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
to:
(:cellnr align='center' width='10%':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg\\
%width
=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
(:cell align='left' width='10%':)
April 30, 2015, at 05:33 PM by 212.194.65.231 -
April 30, 2015, at 05:33 PM by 212.194.65.231 -
Changed line 77 from:
(:cell align='center' width='10%':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
to:
(:cell align='left':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
April 30, 2015, at 05:33 PM by 212.194.65.231 -
Changed lines 76-77 from:
(:cellnr align='center':) %width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg
(:cell   align='center':) %width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
to:
(:cellnr align='center' width='10%':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/tet+tel-1.jpg
(:cell align='center' width='10%':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/new_headexp/E_peau-1.jpg
April 30, 2015, at 05:33 PM by 212.194.65.231 -
Changed lines 64-69 from:
(:cellnr align='left':) %width=220px% http://www-sop.inria.fr/nachos/pics/results/UoB/antenna_array-mesh.jpg
(:cell   align='left':) %width=160px% http://www-sop.inria.fr/nachos/pics/results/mim_structure/Hx_view4.png
(:cellnr align='left':) Light scattering by optical nanoantennas
(:cell   align='left':) Light absorption by MIM structures
(:cellnr align='left':) [[Results/DGTD_optical-nanoantenna | More details]]
(:cell   align='left':) [[Results/DGTD_mim | More details]]
to:
(:cellnr align='center' width='10%':)%width=220px% http://www-sop.inria.fr/nachos/pics/results/UoB/antenna_array-mesh.jpg
(:cell align='center' width='10%':)%width=160px% http://www-sop.inria.fr/nachos/pics/results/mim_structure/Hx_view4.png
(:cellnr align='center':)Light scattering by optical nanoantennas
(:cell align='center':)Light absorption by MIM structures
(:cellnr align='center':)[[Results/DGTD_optical-nanoantenna | More details]]
(:cell align='center':)[[Results/DGTD_mim | More details]]
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(:cellnr align='left':)High-order DGTD method on
(:cell align='left':)Hybrid cubic/tetrahedral DGTD method
(:cellnr align='left':)curvilinear tetrahedral meshes
(:cell align='left':)with application to nanophotonics
(:cellnr align='left':)with application to plasmonics
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(:cellnr align='left':)[[Results/DGTD_curvi  | More details]]
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(:cellnr align='center' width='10%':)%width=175px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
(:cell align='center' width='10%':)%width=170px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_hyb_mesh.jpg %width=120px% http://www-sop.inria.fr/nachos/pics/results/nano_L-guide/Lguide_X_g1_L.png
(:cellnr align='center':)High-order DGTD method on
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(:cellnr align='center':)curvilinear tetrahedral meshes
(:cell align='center':)with application to nanophotonics
(:cellnr align='center':)with application to plasmonics
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(:cell align='left' width='10%':)
(:cellnr align='left':)DGTD method for a non-local Drude model
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(:cell align='center' width='10%':)
(:cellnr align='center':)DGTD method for a non-local Drude model
(:cell align='center':)
(:cellnr align='center':)with application to plasmonics
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(:cell align='left':)Locally implicit DGTD methods
(:cellnr align='left':)for electromagnetics
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(:cellnr align='center':)Hybridized DGFD methods
(:cell align='center':)Locally implicit DGTD methods
(:cellnr align='center':)for electromagnetics
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(:cellnr align='left':) for electromagnetics
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(:cellnr align='left':)for electromagnetics
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align='left':) with application to plasmonics
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(:cell align='left' width='10%':)
(:cellnr align='left':)DGTD method for a non-local Drude model
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(:cellnr align='left':) High-order DGTD method on 
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(:cell   align='left':) with application to nanophotonics
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(:cellnr align='left':) Hybrid MIMD/SIMD high order DGTD solver
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April 24, 2015, at 04:36 PM by 138.96.201.175 -
April 24, 2015, at 02:53 PM by 138.96.201.175 -
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(:cellnr align='center':) Numerical modeling of optical nanoantennas
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(:cellnr align='left':) Optical nanoantennas
(:cell  align='left':) Light absorption by MIM structures
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':)
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(:cellnr align='center':) [[Results/DGTD_optical-nanoantenna | More details]]
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Numerical modeling of optical nanoantennas \\
[[Results/DGTD_optical-nanoantenna | More details]]
April 18, 2015, at 02:39 PM by 82.228.254.112 -
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(:cellnr align='left':) DGTD method for a non-local Drude model
(:cell  align='left':) 
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April 07, 2015, at 10:27 AM by 193.51.208.145 -
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April 06, 2015, at 10:23 PM by 82.228.254.112 -
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Numerical modeling of optical nanoantennas \\
[[Results/DGTD_optical-nanoantenna | More details]]
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!!! Applications related results

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High-order DGTD method \\
on curvilinear tetrahedral meshes \\
with application to plasmonics \\
[[Results/DGTD_curvi | More details]]

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with application to nanophotonics \\
[[Results/DGTD_hybrid | More details]]

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Realistic numerical modeling of microwave interaction \\
with biological tissues using a DGDT method
[[Results/DGTD_bioem | More details]]
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[[Results/DGTD_hybrid | Mores details]]
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Improving the geometrical apprixmation of \\
curvilinear
structures in a high-order DGTD method \\
with application to plasmonics \\
[[Results/DGTD_curvi]]


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/DGTD_curvi | More details]]
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Hybrid cubic/tetrahedral DGTD method \\
with application to light propagation \\
in a L-shaped waveguide composed of nanospheres
[[Results/DGTD_hybrid | More details]]
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%lfloat text-align=center margin-top=5px margin-right=25px margin-bottom=5px margin-left=25px% http://pmichaud.com/img/misc/gem.jpg | '''Rock on!'''
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Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics. \\
[[Results/DGTD_curvi | More details.]]
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Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics \\
[[Results/DGTD_curvi | More details]]
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[[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics]]
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Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics. \\
[[Results/DGTD_curvi | More details.
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%rfloat width=150px%  http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg | [[Results/DGTD_curvi | Improving the geometrical apprixmation]] of curvilinear structures in a high-order DGTD method for plasmonics
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%lfloat text-align=center width=150px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
[[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics]]
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%rfloat width=150px%  http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg | [[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics]]
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%rfloat width=150px%  http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg | [[Results/DGTD_curvi | Improving the geometrical apprixmation]] of curvilinear structures in a high-order DGTD method for plasmonics
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%rframe width=150px%  http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg | [[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics]]
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%rfloat width=150px%  http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg | [[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics]]
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%lfloat text-align=center width=150px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
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%rframe width=150px%  http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg | [[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics]]

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(:table border='0' width='100%' align='center' cellspacing='1px':)
(:cellnr align='center':) [[Results
/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics]]
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(:table border='0' width='100%' align='center' cellspacing='1px':)
(:cellnr align='center':) [[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics]]
(:cell  align='center':) %width=375px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-cross-cur.jpg
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[[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmionics]]
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[[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmonics]]
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Classical finite element methods rely on tessellations composed of straight-edged elements mapped linearly from a reference element, on domains which physical boundaries and interfaces are indifferently straight or curved. This approximation represents serious hindrance for high-order methods, since they limit the precision of the spatial discretization to second order. Thus, exploiting an enhanced representation of the physical geometry of a considered problem is in agreement with the natural procedure of high-order methods, such as the discontinuous Galerkin method. In the latter framework, we propose and validate an implementation of a high-order mapping for tetrahedra, and then focus on specific nanophotonics setups to assess the gains of the method in terms of memory and performances.


%lfloat text-align=center width=250px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
Tetrahedral mesh for plasmonic resonance of a gold nanosphere. The scatterer (in red) is enclosed by the total field (TF) region (in blue), delimited by the TF/SF interface on which the incident field is imposed. Then we find the scattered field (SF) region (in purple), surrounded by UPMLs (in gray).
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[[Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmionics]]
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[[Main/Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmionics]]

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[[Main/Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmionics]]
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Classical finite element methods rely on tessellations composed of straight-edged elements mapped linearly from a reference element, on domains which physical boundaries and interfaces are indifferently straight or curved. This approximation represents serious hindrance for high-order methods, since they limit the precision of the spatial discretization to second order. Thus, exploiting an enhanced representation of the physical geometry of a considered problem is in agreement with the natural procedure of high-order methods, such as the discontinuous Galerkin method. In the latter framework, we propose and validate an implementation of a high-order mapping for tetrahedra, and then focus on specific nanophotonics setups to assess the gains of the method in terms of memory and performances.


%lfloat text-align=center width=250px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
Tetrahedral mesh for plasmonic resonance of a gold nanosphere. The scatterer (in red) is enclosed by the total field (TF) region (in blue), delimited by the TF/SF interface on which the incident field is imposed. Then we find the scattered field (SF) region (in purple), surrounded by UPMLs (in gray).
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[[Main/Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmionics]].
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[[Main/Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmionics]]
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Classical finite element methods rely on tessellations composed of straight-edged elements mapped linearly from a reference element, on domains which physical boundaries and interfaces are indifferently straight or curved. This approximation represents serious hindrance for high-order methods, since they limit the precision of the spatial discretization to second order. Thus, exploiting an enhanced representation of the physical geometry of a considered problem is in agreement with the natural procedure of high-order methods, such as the discontinuous Galerkin method. In the latter framework, we propose and validate an implementation of a high-order mapping for tetrahedra, and then focus on specific nanophotonics setups to assess the gains of the method in terms of memory and performances.


%lfloat text-align=center width=250px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
Tetrahedral mesh for plasmonic resonance of a gold nanosphere. The scatterer (in red) is enclosed by the total field (TF) region (in blue), delimited by the TF/SF interface on which the incident field is imposed. Then we find the scattered field (SF) region (in purple), surrounded by UPMLs (in gray).
[[<<]]
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[[Main/Results/DGTD_curvi | Improving the geometrical apprixmation of curvilinear structures in a high-order DGTD method for plasmionics]]
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Classical finite element methods rely on tessellations composed of straight-edged elements mapped linearly from a reference element, on domains which physical boundaries and interfaces are indifferently straight or curved. This approximation represents serious hindrance for high-order methods, since they limit the precision of the spatial discretization to second order. Thus, exploiting an enhanced representation of the physical geometry of a considered problem is in agreement with the natural procedure of high-order methods, such as the discontinuous Galerkin method. In the latter framework, we propose and validate an implementation of a high-order mapping for tetrahedra, and then focus on specific nanophotonics setups to assess the gains of the method in terms of memory and performances.

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%lfloat text-align=center margin-top=-25px margin-right=25px margin-bottom=5px margin-left=25px width=250px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
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%lfloat text-align=center width=250px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
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%lfloat text-align=center margin-top=-25px margin-right=25px margin-bottom=5px margin-left=25px width=250px% http://www-sop.inria.fr/nachos/pics/results/nano_sphere/nano_sphere-mesh.jpg
Tetrahedral mesh for plasmonic resonance of a gold nanosphere. The scatterer (in red) is enclosed by the total field (TF) region (in blue), delimited by the TF/SF interface on which the incident field is imposed. Then we find the scattered field (SF) region (in purple), surrounded by UPMLs (in gray).
[[<<]]
March 25, 2015, at 01:53 PM by 138.96.201.175 -