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TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

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Page 1: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

TMM Applied for Shell Scattering

Weijia Wang

Dec.14.2010

Page 2: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Outline

Model

Spherical coordinates:Epsilon=-0.5 Check Epsilon=-0.5

Quasi Static Approximation

Cylindrical Coordinates

Page 3: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Model

A single shell with E

psilon

a static electric field

a plane wave

r

2R

=

Page 4: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Spherical Coordinate

TMM2

( ) cosll l

dc r

r

3301

21

2 1 1(1 )(1 ) (1 2 )(1 ) 0

9 2 9r rr r

RRT

0.5r

3302

3302

2 1 2 12 2 (1 ) (1 )(1 ) (1 )3 2 33 2 3

1 1 21 (1 ) (1 )(1 ) (1 2 )3 33 3

rr

r l rl

llr r

r r

R cc R

dd RR

1

0

tTr

21

22

Tr

T

Page 5: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Drude Model+Mie Theory

2

2( ) 1 pr

ww

w

296nm e= -0.13

254nm e= -0.53

20nm:24nm

Page 6: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Quasi Static Approximation

2R

=

10nm:12nm Epsilon=-0.5

Page 7: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Quasi Static ApproximationR ( nm ) Wavelength (nm)

12 370 4.91

24 880 5.84

36 1460 6.45

48 2080 6.90

60 2750 7.29

72 3460 7.65

84 4190 7.94

96 4950 8.21

108 5740 8.46

120 6540 8.67

180 10860 9.60

240 15560 10.32

600 48910 12.97

1200 116340 15.43

2 R

~20

2R

=

Page 8: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Cylindrical Coordinates

5000Hz , R 0.2 m: 0.4mEpsilon=-2

Page 9: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Cylindrical Coordinates

TMM

( ) cosll l

dc r

r

3 321 1 0

1 1( ) (2 )r r

r r

T R R

Page 10: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Summary

Shell Epsilon=-0.5

Quasi Static Approximation

Nanoscale: ~ 20

Page 11: TMM Applied for Shell Scattering Weijia Wang Dec.14.2010

Thanks!