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Brüser, Björn Christian: Coherent light scattering from photonic crystals and phase latticesKohärente Lichtstreuung an photonischen Kristallen und Phasengittern. 2011
Inhalt
Zusammenfassung
Abstract
Contents
Preface
1. Properties of Photonic Crystals
1.1. Dielectric function
1.2. Phase lattices
1.3. Woodpile-structured photonic crystals
2. Electromagnetic Waves in PeriodicMedia
2.1. Electrodynamics for infinitely large three-dimensionalphotonic crystals
2.2. Electrodynamic light interaction with 3D photoniccrystals of finite size
2.3. Approximating approaches
3. Scattering Geometry
3.1. Effective refractive index and conservation of theparallel wave vector component
3.2. Laue equations
3.3. Definition of the scattering coordinate system
3.4. Scanning methods
4. Experimental Setup
4.1. Diffractometer
4.2. Light sources and optical elements
4.3. Control software and electronic parts of the setup
5. Simulated Scattering Curves fromWoodpile PCs
5.1. Simulation method
5.2. Simulation parameters
5.3. Results
5.4. Conclusions
6. Woodpile Photonic Crystals
6.1. Wavelength-dependent refractive index
6.2. Woodpile photonic crystals - IP44 photo resist
7. Holographic Phase Lattices
7.1. InPhase
7.2. Aprilis
7.3. NAMIROS
7.4. Discussion
8. Summary
8.1. Holographic lattices
8.2. Woodpile-structured photonic crystals
9. Outlook
9.1. Implementation of PCs in diffractive-optical devices
9.2. Further improvements of the experimental and theoretical analysis
A. Derivation of the ScatteringGeometry
A.1. Analytical approach
B. Woodpile Photonic Crystals - SU8Photo Resist
B.1. First set of photonic crystals
B.2. Second set of photonic crystals
Bibliography
Acknowledgements