Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University,...

47
Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects in optical spectra of photonic crystals

Transcript of Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University,...

Page 1: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Anton Samusev

JASS’0530 March – 9 April, 2005

Saint Petersburg State Polytechnical University,

Ioffe Physico-Technical Institute

Polarization effects in optical spectra of photonic crystals

Page 2: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Overview1. Photonic band gap structure of artificial opals

2. Optical polarization-resolved study of photonic crystals: limited experimental data

3. Polarization effects in transmission spectra of artificial opals

4. Fresnel theory and Brewster effect (semi-infinite homogeneous medium)

5. 3D diffraction of light in opals: strong polarization dependences

6. Conclusions

Page 3: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Bragg Diffraction

~ 2B d

1 2

(111) ef 2 2 2

3( ) 2 coshkl Θ n Θ

h k ld

Page 4: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Energy gap in electromagnetic spectrum

Increasing of the dielectric contrast could lead to the overlapping of energy gaps in any direction in 3D space.

Page 5: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Angular-resolved transmission spectra of artificial opals

Bandgap position for different incident angle directions

Page 6: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Photonic Bandgap Structure of Artificial Opals

Page 7: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Experimental evidence of polarization dependence in reflectivity spectra of artificial opals

Galisteo-Lopez et al, Appl. Phys. Lett. 82, 4068 (2003)

0° < ext < 39° 450nm < < 700nm

Page 8: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Bragg diagrams

1 2

(111) ef 2 2 2

3( ) 2 coshkl Θ n Θ

h k ld

Page 9: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Light coupling to single and multiple sets of crystallographic planes

LU – scanning plane0° < < 39°

450nm < < 700nm

Galisteo-Lopez et al,Appl. Phys. Lett. 82, 4068 (2003)

LgKL – scanning plane0° < < 70°

365nm < < 825nm

Baryshev et al, our group

Page 10: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

tg( )

tg( )t i

p pt i

R A

sin( )

sin( )t i

s st i

R A

n1 n2 =>

t i and B 45°

B2 1= arctan( / )n n

Fresnel formulas

Page 11: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

LgKL scanning plane

(2b)

(2a)

(1b)

(1a)

)35(EEE

)35(EEE

)(EEE

)(EEE

)0(02p

(200)p

||)0(02

s(200)s

)1(11s

(111)s

||)1(11

p(111)p

_

_

Page 12: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Polarization dependences of photonic gaps. Analogy with Fresnel theory. Brewster angle.

Page 13: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Polarization peculiarities in transmission spectra of opals(theoretical and experimental results

by A.V. Selkin and M.V.Rybin)

400

00

CalculationExperiment

Page 14: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Fabrication of artificial opals

Silica spheres settle in close packed hexagonal

layers

There are 3 in-layer positionA – red; B – blue; C –green;Layers could pack infcc lattice: ABCABC or ACBACBhcp lattice: ABABAB

Page 15: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Diffraction Experimental Scheme•Laser beam propagates through:

•Depolarizer•Polarizer•Lens in the center of the screen

•Reflects from the opal sample

Page 16: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

During an experiment

Page 17: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Diffraction pattern from high quality opal structure fcc I (…ABCABC…)

[-110]

fcc I

Page 18: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

[-110]

fcc II

Diffraction pattern from high quality opal structure fcc II (…ACBACB…)

Page 19: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

[-110]

Diffraction pattern from a twinned opal structure fcc I + fcc II (…

ABCACBA…)fcc I+fcc II

Page 20: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

[-110]

Diffraction pattern on strongly disordered opal structure

Page 21: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Bragg diffraction patterns in[-110] geometry

Page 22: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Processed images

Page 23: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Image analysis process

1. Modification of the screen image shape

2. Profile plotting and searching for a peak in I() dependence [intensity as a function of coordinate along section]

Page 24: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 0o

Page 25: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 10o

Page 26: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 20o

Page 27: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 30o

Page 28: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 40o

Page 29: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 50o

Page 30: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 60o

Page 31: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 70o

Page 32: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 80o

Page 33: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 90o

Page 34: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 100o

Page 35: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 110o

Page 36: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 120o

Page 37: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 130o

Page 38: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 140o

Page 39: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 150o

Page 40: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 160o

Page 41: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 170o

Page 42: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

= 180o

Page 43: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Intensity as a function of polarization angle I()

Page 44: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Conclusions1. It is demonstrated that transmission and diffraction

measurements provide quantitative information on the complex interaction of polarized light with three-dimensional photonic crystals.

2. The polarization-resolved transmission spectra can be discussed in terms of the Fresnel theory and the Brewster effect taken into account three-dimensional photonic structure of synthetic opals.

3. Our diffraction data shows experimental evidence of strong polarization dependence even far from Brewster angle.

4. These experimental results and conclusion bridge optical spectroscopy of photonic crystals and optical spectroscopy of conventional bulk homogeneous materials.

Page 45: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

The versus 1 + cos ( dependence linearization

Theoretical calculation:(V.A.Kosobukin):

= neffd(1 + cos)

neff 1,365

d nm

514,5 nm 496,5 nm 488,0 nm 476,5 nm 457,9 nm

Page 46: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.
Page 47: Anton Samusev JASS’05 30 March – 9 April, 2005 Saint Petersburg State Polytechnical University, Ioffe Physico-Technical Institute Polarization effects.

Artificial Opal

Artificial opal sample (SEM Image)Several cleaved planes of fcc structure are shown