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comsol在纳米方面的应用
Applications of COMSOL 3.2
in Nanophotonics
Jian Pan
Nanjing University
Nanjing, China
Outline
Background
Recent implementation of COMSOL in
simulation of artificial nanostructures
Our recent test results
Questions still have
Physical background –Negative Index Materials
Theoretical background
1968, Theory of negative refraction - V. G. Veselogo
1999, Theory of split-ring resonance (SRR) - J. B. Pendry
V.G.Veselogo Sov. Phys. Usp. 10 509 (1968)
J.B.Pendry et al. IEEE Micro Theo. Tech. 47 2075 (1999)
Negative index metamaterials (NIM)
R. Shelby et al. Science 292 77 (2001)
The first NIM was made by Shelby !
Left: structure of the first NIM
Bottom: the measure equipment
and its spectra
Applications of NIM
To build a superlen with extremely fine resolution !
FIB image of the object - “NANO”
AFM of the developed image with
silver superlens
AFM of the lower resolution
image without superlens
N.Fang Science 308 534 (2005)
D. R. Smith Science 308 502 (2005)
How can we get a negative refraction index?
Since the refraction index is:
If we get negative ε and negative μ at the same time
We can get negative index materials
D.Smith J.Pendry et al. Science 305 788 (2004)
How can we get a negative refraction index?
J. B. Pendry
Theory of split-ring resonance
J.B.Pendry et al. IEEE Trans Theo. Tech. 47 2075 (1999)
S.Linden C.Enrick et al. Science 306 1351 (2004)
Pathway of negative index materials
Electric dipole
resonance only
Electric and
magnetic dipole
resonance
Pathway of negative index materials
6~8 THz
100 THz
200 THz
330 THz
Optical dipole resonance of gold nanoring
J. Aizpurua P. Hanarp et al. PRL 90 057401 (2003)
SEM images of gold
nanorings
Near field distribution at
the resonance
Incident at θ=20°!
A. P. Hibbins et al. PRB 74 073408 (2006)
Here is theθ!
Resonant absorption of nanoslit array in metal film
(a) Schematic of sample structure
(b) SEM image of the sample
surface Mode A: Low frequency
Mode B: High frequency
G. Shvets Y. A. Urzhumov J.Opt.A: Pure
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