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Busch K., Lolkes S., Wehrspohn R.B. — Photonic Crystals. Advances in Design, Fabrication, and Characterization
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Название: Photonic Crystals. Advances in Design, Fabrication, and Characterization
Авторы: Busch K., Lolkes S., Wehrspohn R.B.
Аннотация: The majority of the contributions in this topically edited book stems from the priority SP1113 Photonische Kristalle program run by the Deutsche Forschungsgemeinschaft (DFG), resulting in a survey of the current state of photonic crystal research in Germany. The first part of the book describes methods for the theoretical analysis of their optical properties as well as the results. The main part is dedicated to the fabrication, characterization and modeling of two- and three-dimensional photonic crystals, while the final section presents a wide spectrum of applications: gas sensors, micro-lasers, and photonic crystal fibers.
Illustrated in full color, this book is not only of interest to advanced students and researchers in physics, electrical engineering, and material science, but also to company R&D departments involved in photonic crystal-related technological developments.
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Рубрика: Технология /
Статус предметного указателя: Готов указатель с номерами страниц
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Год издания: 2004
Количество страниц: 354
Добавлена в каталог: 15.07.2006
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Предметный указатель
1D, 2D, 3D photonic crystal see "Photonic crystal"
Absorbing crystal 27
AlGaAs, etching 318
Alumina, porous 63 67 78
Alumina, porous, 10%-porosity rule 67
Anchoring of liquid crystals 178 179 183 194
Angle-resolved transmission 245
Angular dispersion 141 143 144
Anisotropy, dielectric 178
Anisotropy, magnetic 178
Anisotropy, optical see "Birefringence"
Arrayed Waveguide Grating 290
Autocorrelation 101
Backtracking 312
Ball lens 326
Band diagram, 2D infinite-height PhC 211
Band diagram, strip waveguide 204
Band gap, dispersion 147
Band gap, width for moderate index slab materials 291
Band gap, width for semiconductor slab materials 291
Band structure 2
Band structure, iso-frequency contours 322
Band structure, Niobiumpentoxide PhC slab 292 296 297
Band structure, polymer PhC slab 292 293
Basis element 156
Beam propagation method (BPM) 313
Binary superimposed grating (BSG) 320
Birefringence 177 178 180 183 192
Bleaching 56
Bloch taper 321
Blue phases 179—182
blue shift 56
Bragg diffraction gap 134 141 144-146 150 151
Cavity 16
Chemically assisted ion beam (CAIBE) etching 316
Cholesteric phase 179—181
Cobweb fiber 266
Colloidal crystal 174 180 183 192
Colloids with different surface charges 115
Core shell structures 115
Coulomb interaction 46 49
Coupling prism 160
Crosslinked colloids 114
Crystallization into opaline structures 120
Crystallization on a fluid matrix 122
Defect mode 28
Defect, lasing 181
Defect, structures 12
Density of states 4
Density-dependent absorption 56
Dephasing 58
Dephasing time 101
DFB laser 103
Dielectric anisotropy 178 181
dielectric constant see "Microwave material"
Dielectric constant, complex 199
Dipole emission 24 29 33
Disordered crystal 27
dispersion 89 91 93 282
Dispersion relation, strip waveguide 204
Dispersion, chromatic 323
Dispersion, compensator 323
Dispersion, slope 323
Dispersion, W1-waveguide (SOI) 324
Distributed feedback resonators 254
DOS, anisotropic model 26
DOS, band edge singularities 26
DOS, projected LDOS 24
Effective 2D model 260
Effective Hamiltonian 99
Effective mass approximation 26
Effective nonlinearity 7
Effective parameters 256
Elastic properties of liquid crystals 178
Electrochemical deposition 171
Electron beam lithography 187—189
Electron cyclotron resonance (ECR) enhanced etching 316
Electron population 51 54
electron-beam lithography 125
EM field continuity 134 144
Emission spectra 105
Empty-lattice approximation 89
Equations, Maxwell — Bloch 256
Etching 186 188 189
Etching depth 291—293 298—300 302 305
Etching, AlGaAs 318
Etching, chemically assisted ion beam (CAIBE) 316
Etching, electrochemical 63
Etching, electron cyclotron resonance (ECR) enhanced 316
Etching, inductively coupled plasma (ICP) 316
Etching, large area 65
Etching, SOI 318 319
Exciton 44 53
Exciton, binding energy 47
Extinction 91
Fabry — Perot-resonances 74 140 142
FDTD see "Finite-difference-time-domain calculation"
Ferroelectric liquid crystals 194
Fiber technology 275
Fiber-to-chip coupling 325
Field computation, boundary elements 34
Field computation, frequency domain 33
Filling factor 157 160
Filter PL 136 145—147
Finite difference time domain 142—144 273
Finite element method 267
Finite element solvers 312
Finite-difference-time-domain calculation 36 310
Finite-difference-time-domain calculation, out-of-plane losses 292 300 305
Finite-difference-time-domain calculation, PhC slab waveguide transmission 299 300
Finite-difference-time-domain calculation, PhC waveguide bend 296 297
Finite-height PhC see "Photonic crystal"
Fluorescent dyes 114
Focal point 150
Form factor 157
Frequency domain propagation 313
Full band gap 109 127
Functional colloids 114
GaAs, porous 64 68 81
Gain 56
Gas sensor 238
Generalized Coulomb potential 46
Gold nanodisks 87 94 104
Grating, binary superimposed (BSG) 320
Gratings, surface relief 247
Group velocity 5 239
Group velocity, dispersion 5
Heterojunction 132 134 135 142—144 149 151
Heterostructures 125
High-delta fiber 266
Hole population 51 54
Holey fiber 266
Holographic lithography 154
ICP etching system 316
III-V semiconductors, porous 63 68 78
Impedance matching 326
Inductively coupled plasma (ICP) etching 316
Infinite-height PhC see "Photonic crystal"
InGaAsP, W1-waveguide 311
InGaAsP/InP, superprism 320
Inhomogeneous carrier populations 54
Inorganic colloids 110
InP, porous 64 68 78
Interband polarization 49 51
Interconnectivity conditions 158
Interface gap 132 141 143
Interface minimum 141—144
Interference lithography 247
Interference pattern 155
Inverted opal 37 176 183 185
Isophote 163
Ito 86
kp perturbation theory 5
Laser 39
Laser, direct writing 161
Laser, multi-segment 318
Laser, semiclassical theory 256
Laser, widely tunable 318
Lateral patterning 125
Lattice, bcc 156
Lattice, Bravais 156
Lattice, fcc 156 158
Lattice, hexagonal 66 67 79
Lattice, Honeycomb 67
Lattice, real space 156
Lattice, reciprocal 156
Lattice, simple cubic 76
Lattice, square 67
Layer-by-layer, deposition 138 151
Layer-by-layer, structure 165
LDOS 24 35 38
Leaky modes 268
Light cone 93
Light-matter interaction 44 49
Linear absorption 47 53
Local density of states 5
Localized functions 267
loss 280 see
Loss, factor 199
Loss, measurement 209
Loss, per medium wavelength 199
Loss, scattering 209
Losses, W1-waveguide 309
Low loss materials 289 290 305
Macroporous silicon 228 241
Markov approximation 30
Matching, phase, spot, impedance 326
material see "Microwave material" "Dielectric
Maxwell's equations 199
Maxwell's equations, scaling the dielectric constant 200
Maxwell's equations, scaling the structure 198 200
Metallo-dielectric, grating 10
Metallo-dielectric, photonic crystal 85
Microcavity 75 176 190 193
Microreplication 247
Microresonators and fabrication quality 230
Microresonators and SNOM 228 233
microwave 198
Microwave, coaxial feeder 205
Microwave, equipment 203
Microwave, material 201
Microwave, measurement 203 204 207 210 211
Microwave, vector network analyser 203
Mirror, scattering matrix 208
Mode field 281
Moving meniscus 123
Multi-photon, absorption 163
Multi-photon, polymerization 162
Multi-scale, analysis 256
Multi-scale, approach 7
Multipole expansion 267
Nanoimprinting 67
Nanoparticle arrays 87 94
Nanowire arrays 90 97
Nematic phase 179 187
Niobiumpentoxide, 291-293 304 305
Non-silica 278
Nonlinear absorption 56
Nonlinear polarization 6
Nonlinear Schroedinger equation 7
Numerical aperture 280
Numerical modeling 135
Numerics, FDTD 202
Numerics, FE 202
Opal, artificial 109
Particle plasmon 86
Patterned substrates 125
PDLC see "Polymer-dispersed liquid crystals"
Perfectly matched layer (PML) 272 310
Permittivity see "Microwave material" "Dielectric
Phase matching 326
Photobleaching 298 302 303 305
Photoinitiator 155
Photonic band gap fiber 266
Photonic band gap, complete 76 77
Photonic crystal 189 190 241
Photonic crystal fiber 266
Photonic crystal, 1D 26 78
Photonic crystal, 2D 69 70 78 79
Photonic crystal, 2D crystal 33
Photonic crystal, 2D finite-height, line-defect waveguide 210
Photonic crystal, 2D finite-height, line-defect waveguide loss 212
Photonic crystal, 2D finite-height, measurement 212
Photonic crystal, 2D finite-height, microwave model 210
Photonic crystal, 2D inifinite-height, band diagram 211
Photonic crystal, 2D inifinite-height, measurement 211
Photonic crystal, 2D inifinite-height, microwave model 211
Photonic crystal, 2D inifinite-height, transmission 211
Photonic crystal, 3D 75 81
Photonic crystal, bulk 70
Photonic crystal, circuit 19
Photonic crystal, finite 72
Photoresist (SU-8) 155
PL intensity ratio 146 149
Planar defect 133 134
Planar photonic crystals 187 193
Plane wave expansion 267
Plane wave method 3
Plano-convex lens (Si) 326
Plasma enhanced chemical vapor deposition (PECVD) 317
Polariton splitting 96 97
Polyelectrolyte multilayers 117
Polymer 297—299 301 302
Polymer colloids 111
Polymer-dispersed liquid crystals 185
Polymerization, cationic 155
Polymerization, radical 155
Polymers, conjugated 247
Pore, crystallographical 79
Pore, currrentline 79
Pore, diameter modulation 75 81
Post-exposure bake 158
Preform 275
Propagation constant 268
Propagation loss of slab waveguides 289
Quantum cascade lasers 245
Quantum electrodynamics (QED) 24 29
Quantum optics 23
Quantum optics, multiphoton states 32
Quantum optics, strong coupling 28
Quantum optics, weak coupling 24
Quantum well 47 53
quantum wire 55
Radiated power 148
Radiation losses 290 305
Rayleigh, anomalies 87
Rayleigh, scattering 289
Reflection 11
Reflection spectrum 167
Refractive index 112
Refractive index, high 289
Refractive index, moderate to low 289 290 297 299 302 304 305
Refractive index, negative 314
Refractive index, tuning of 297 305
Replica 127
Resonance fluorescence 28 32
Resonant condition 133
Resonator 290 301—303
Rotating wave approximation 29
Saturation threshold 132 147—149
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