
Nonlinear Optical Materials for All-Optical Switching Applications by Rajesh Sharma
This book highlights the background and fundamentals of nonlinear optical materials in relation to all-optical switching applications. It explains major aspects of nonlinear refractive index and the nonlinear absorption phenomena which are essential to decide the figure-of-merit of various materials for the all-optical switching. Autocorrelation technique, frequency-resolved optical gating, spectral phase interferometry for direct electric-field reconstruction, grating-eliminated no-nonsense observation of ultrafast incident laser light e-fields are discussed to measure the temporal and spectral profiles of the ultrafast pulsed lasers. Advanced nonlinear optical characterization methods such as single- and dual-arm Z-scan, pump-probe and beam deflection techniques are also discussed at length. The transmission signal obtained in the majority of the nonlinear optical effects is found to be weak which creates hiccups to obtain faster switching speeds. Various solutions are discussed to overcome these existing limitations of the all-optical switching-based devices. Optical nonlinearities in semiconductors, organic molecules and challenges in all-optical switching devices are also addressed in the book.
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Modern Techniques of Spectroscopy
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Nanomaterials for Luminescent Devices, Sensors, and Bio-imaging Applications
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Generative AI for Photonic Sensing
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Advanced Optical Sensors
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Mid-Infrared Fluoride and Chalcogenide Glasses and Fibers
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Material Characterization Techniques and Applications
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New Directions in Thin Film Nanophotonics
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LED-Based Photoacoustic Imaging
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Azimuthal Walsh Filters
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Advanced Fiber Sensing Technologies
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Precision Lens Molding of Glass: A Process Perspective
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White Light Emitting Materials
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Multispectral Image Sensors Using Metasurfaces
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Linear and Nonlinear Optical Spectroscopy and Microscopy
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Computational Optical Phase Imaging
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Spontaneous Symmetry Breaking, Self-Trapping, and Josephson Oscillations
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Persistent Luminescence
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Advanced Optical Methods for Brain Imaging
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Optical Spatial Solitons in Photorefractive Materials
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Optoelectronic Gyroscopes
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Advanced Geometrical Optics
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Optical Fiber Sensors and AI
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Applied Spectroscopy and the Science of Nanomaterials
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General Theory of Light Propagation and Imaging Through the Atmosphere
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Advanced Functional Materials for Optical and Hazardous Sensing
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Optical Properties of Metal Oxide Nanostructures
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Advanced Materials for Solid State Lighting
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Upconversion Nanoparticles (UCNPs) for Functional Applications
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Frontiers in Biophotonics for Translational Medicine
Dr. Rajesh Sharma received his Ph.D. in Lasers and Nanomaterials in collaboration with the Defence Lab, Defence Research and Development Organization, Jodhpur, and Punjabi University, Patiala, INDIA in 2006. Thereafter, he worked as Assistant and Associate Professor at the All India Council of Technical Education affiliated Institutes and held various responsibilities such as Dean Academics, officiating Director of Engineering Institute, and Head of Applied Sciences. He has worked for about 9 years as Senior Research Scientist at the College of Optics and Photonics, University of Central Florida, USA, Paul-Drude-Institut, Humboldt University, GERMANY, Universite Montpellier 2, FRANCE. Dr. Rajesh Sharma is presently working as Associate Professor in Department of pure and applied Physics, Guru Ghasidas Vishwavidyalaya (A Central University), Bilaspur, INDIA. He has also worked as Professor in Chandigarh University, INDIA.
| SKU | Unavailable |
| ISBN 13 | 9789819659203 |
| ISBN 10 | 9819659205 |
| Title | Nonlinear Optical Materials for All-Optical Switching Applications |
| Author | Rajesh Sharma |
| Series | Progress In Optical Science And Photonics |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer Nature Switzerland AG |
| Year published | 2025-06-25 |
| Number of pages | 132 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |




























