Nonlinear photonic crystals / E. Slusher, B.J. Eggleton (eds.)
Tipo de material: TextoSeries Springer series in photonics ; 10Detalles de publicación: Berlin : Springer, 2003 Descripción: XX, 375 p. : IL. ; 24 cmISBN: 3-540-43900-5Tema(s): Óptica cristalográfica | Óptica no lineal | FotónicaResumen: Nonlinear optical studies of periodic dielectric structures have blossomed in the past two decades. New fabrication techniques are producing fiber grating and multidimensional photonic crystals in materials where the refractive index can be varied by light pulses and beams. Gap solitons that can propagate at any velocity from zero to the speed of light and spatial solitons that prevent the diffractive spread of light in waveguide arrays are two examples of the new phenomena described in this book. Microstructured optical fibers allow control of the guided mode dispersion for broadband light generation and new soliton phenomena. Many new materials and structures are being developed that will impact new optical devices with applications in optical communications and optical data processing.Resumen: INDICE: Theory of nonlinear pulse propagation in periodic. Structures.- Nonlinear Propagation in Birefringent Photonic Crystals.- Raman Gap Solitons in Nonlinear Photonic Crystals.- Self-Transparency and Localization in Gratings with Quadratic Nonlinearity.- Photonic Band Edge Effects in Finite Structures and Applications.- Simultons.- Nonlinear Propagation in Fiber Gratings.- Gap Soliton Experiments.- Pulsed Interactions in Nonlinear Fiber Bragg Gratings.- Chalcogenide Glasses.- Microstructred Fibers.- Semiconductor Optical Amplifiers with Bragg Gratings.- Atomic Solitons in Optical Lattices.- Spatial Solitons in... Etc.Tipo de ítem | Biblioteca de origen | Signatura | URL | Estado | Fecha de vencimiento | Código de barras | Reserva de ítems |
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Monografías | 02. BIBLIOTECA CAMPUS PUERTO REAL | 621.391.6/NON (Navegar estantería(Abre debajo)) | Texto completo | Prestado | 31/01/2025 | 3741455622 |
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Nonlinear optical studies of periodic dielectric structures have blossomed in the past two decades. New fabrication techniques are producing fiber grating and multidimensional photonic crystals in materials where the refractive index can be varied by light pulses and beams. Gap solitons that can propagate at any velocity from zero to the speed of light and spatial solitons that prevent the diffractive spread of light in waveguide arrays are two examples of the new phenomena described in this book. Microstructured optical fibers allow control of the guided mode dispersion for broadband light generation and new soliton phenomena. Many new materials and structures are being developed that will impact new optical devices with applications in optical communications and optical data processing.
INDICE: Theory of nonlinear pulse propagation in periodic. Structures.- Nonlinear Propagation in Birefringent Photonic Crystals.- Raman Gap Solitons in Nonlinear Photonic Crystals.- Self-Transparency and Localization in Gratings with Quadratic Nonlinearity.- Photonic Band Edge Effects in Finite Structures and Applications.- Simultons.- Nonlinear Propagation in Fiber Gratings.- Gap Soliton Experiments.- Pulsed Interactions in Nonlinear Fiber Bragg Gratings.- Chalcogenide Glasses.- Microstructred Fibers.- Semiconductor Optical Amplifiers with Bragg Gratings.- Atomic Solitons in Optical Lattices.- Spatial Solitons in... Etc.
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