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Soliton (optics)
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Related lectures (19)
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Solitons: Optical Phenomenon
Explores the discovery, properties, and excitation of solitons in optical fibers, including bright and dark solitons.
Self-emergence of laser cavity solitons in microcombs
Explores the self-emergence of laser cavity solitons in microcombs, focusing on the role of slow nonlinearities.
Generalities on Nonlinearities in Silica
Explores the generalities on nonlinearities in silica, including the optical Kerr effect and stimulated scatterings.
Applications using stimulated scatterings
Explores applications of stimulated scatterings in optical fibers, including power probing, distributed sensing, slow & fast light, and optical storage.
Stimulated Scatterings: Nonlinear Fibre Optics
Explores stimulated scatterings in nonlinear fibre optics, covering Brillouin and Raman scattering, spectral characteristics, and power limitations.
Supercontinuum Generation: Introduction and Waveguide Dynamics
Introduces supercontinuum generation, discusses challenges in bulk generation, advantages of waveguides, and modeling considerations.
Nonlinear Optics: Introduction
Introduces the history and applications of nonlinear optics, focusing on the Optical Kerr Effect and various nonlinear parametric processes.
Indian Ocean Tsunami 2004: WKB Method
Explores the simulation of the 2004 Indian Ocean tsunami and the WKB method for analytical solutions.
Nonlinear Optics: Applications and Energy Diagrams
Covers a variety of nonlinear optics processes, quantum technologies, and applications in spectroscopy and microscopy.
Multiwavelength Effects: Nonlinear Fiber Optics
Explores the optical Kerr effect, cross phase modulation, and four-wave mixing in nonlinear fiber optics.
Optical Methods in Chemistry: Materials Properties and Applications
Explores optical methods in chemistry, focusing on materials properties and applications, including non-linear optics and self-focusing phenomena.
Nonlinear Optics: Optical Kerr Effect and Phase Conjugation
Explores nonlinear optics phenomena, including optical rectification, frequency conversion, and phase conjugation.
Ultrafast Lasers and Non-linear Optics
Covers ultrafast lasers, non-linear optics, mode selection, cavity dumping, and chirped pulse amplification, exploring Nobel Prize-winning contributions in physics and chemistry.
Physical Meaning of Terms in Acoustic Waves
Explores the physical interpretation of terms in acoustic wave equations and the balance between wave steepening and linear dispersion.
Fiber Nonlinearities: Introduction and Effects
Introduces fiber nonlinearities, discussing their impact and effects on light interaction in optical fibers.
Short Pulse Generation in Laser Systems
Explores short pulse generation in laser systems, covering inhomogeneous width, mode-locking regimes, and the optical Kerr effect.
Self Phase Modulation: Understanding Nonlinear Fibre Optics
Explores self phase modulation in nonlinear fibre optics, discussing its impact on pulse shape and frequency.
Pulse Propagation in Nonlinear Fibre Optics
Explores pulse propagation in nonlinear and dispersive media, optical wave breaking, and soliton Gaussian equilibrium.
Charge Carriers in Organic Electronics: Solitons and Polarons
Discusses charge carriers in organic materials, focusing on solitons, polarons, and their implications for charge transport and device performance.
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