Photonic Band Gap Materials: NATO Science Series E:, cartea 315
Editat de C.M. Soukoulisen Limba Engleză Hardback – 31 mar 1996
Photonic Band Gap Materials identifies three most promising areas of research. The first is materials fabrication, involving the creation of high quality, low loss, periodic dielectric structures. The smallest photonic crystals yet fabricated have been made by machining Si wafers along (110), and some have lattice constants as small as 500 microns. The second area is in applications. Possible applications presented are microwave mirrors, directional antennas, resonators (especially in the 2 GHz region), filters, waveguides, Y splitters, and resonant microcavities. The third area covers fundamentally new physical phenomena in condensed matter physics and quantum optics.
An excellent review of recent development, covering theoretical, experimental and applied aspects. Interesting and stimulating reading for active researchers, as well as a useful reference for non-specialists.
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SPRINGER NETHERLANDS – 31 mar 1996 | 1805.84 lei 43-57 zile |
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Specificații
ISBN-13: 9780792339915
ISBN-10: 0792339916
Pagini: 730
Ilustrații: X, 730 p.
Dimensiuni: 210 x 297 x 40 mm
Greutate: 1.21 kg
Ediția:1996
Editura: SPRINGER NETHERLANDS
Colecția Springer
Seria NATO Science Series E:
Locul publicării:Dordrecht, Netherlands
ISBN-10: 0792339916
Pagini: 730
Ilustrații: X, 730 p.
Dimensiuni: 210 x 297 x 40 mm
Greutate: 1.21 kg
Ediția:1996
Editura: SPRINGER NETHERLANDS
Colecția Springer
Seria NATO Science Series E:
Locul publicării:Dordrecht, Netherlands
Public țintă
ResearchCuprins
Photonic Band Gaps: Introduction.- An Introduction to Photonic Crystals.- Photonic Band Gap Materials.- Micromachined Photonic Band Gap Crystals: From Microwave to the Far-Infrared.- Fabrication of Three-Dimensional Photonic Band Gap Material by Deep X-ray Lithography.- Bloch Wave Optics in Photonic Crystals: Physics and Applications.- Optical Measurements of Photonic Band Structure in Colloidal Crystals.- Influence of Optical Band Structures on the Diffraction of Photonic Colloidal Crystals.- From Micromaster to Microlaser.- Elastic Waves in Periodic Composite Materials.- Photonic Band Gaps: Metallic Structures and Transmission.- 3-D Metallic Photonic Bandgap Structures.- Photonic Band Gap Structures: Studies of the Transmission Coefficient.- Transfer Matrix Techniques for Electromagnetic Waves.- Layer-by-Layer Methods in the Study of Photonic Crystals and Related Problems.- Electromagnetic Field Distributions in Complex Dielectric Structures.- Photonic Band Structures and Resonant Modes.- Photonic Band Structures of Systems with Components Characterized by Frequency-Dependent Dielectric Functions.- Photonic Band Structures of 1D and 2D Periodic Systems with Metallic Components in the Presence of Dissipation.- Band Structure and Transmission of Photonic Media: A Real-space Finite-difference Calculation with the R-matrix Propagator.- Photonic Band Gaps: Applications.- Microwave Applications of Photonic Crystals.- Optimized Antennas on Photonic Band Gap Crystals.- Design Considerations for a 2-D Photonic Band Gap Accelerator Cavity.- Microcavities in Channel Waveguides.- Exploring the Two-dimensional Photonic Bandgap in Semiconductors.- 2D Photonic Band Gap Structures in Fibre Form.- Dispersion, Tunability and Applications of Defect Modes in Photonic Band-gap Structures.- Fabrication of 2-D Infrared Photonic Crystals in Macroporous Silicon.- Photonic Band Gaps: 1D and 2D Structures.- Techniques for Bandstructures and Defect States in Photonic Crystals.- Impurity Modes from Frequency Dependent Dielectric Impurities in Photonic Band Structures.- Two-Dimensional Photonic Band Gaps: New Hexagonal Structures.- Photonic Band Gaps in Complex-unit Systems and Quasi One-dimensional Waveguides.- Theory of Light Scattering Through a Two-dimensional Periodic Array.- Two-Dimensional Guides with Photonic Band Gap Boundaries: Mode Structures.- Second Harmonic Scattering From Sites of a Crystalline Lattice.- Multistability and Switching in Nonlinear Layered Optical and Electronic Media.- Waveguides in Periodic Structures with Smoothly Varying Parameters.- Photonic Band Structure Calculation of System Possesing Kerr Nonlinearity.- Photonic Band Gaps and Localization.- Localization of Light: Theory of Photonic Band Gap Materials.- Energy Transport Velocity in Random Media.- Photonic Band Structures of Atomic Lattices.- Interaction of Different Scattering Mechanisms in a One-dimensional Random Photonic Lattice.- Wave Confinement and Localization: Dimensional Crossover Effect.- Transition from Ballistic to Diffusive Behavior for Multiply Scattered Waves.- Author Index.