Rajesh Sharma Sharma Nonlinear Optical Materials for All-Optical Switching Applications

Nonlinear Optical Materials for All-Optical Switching Applications

von Rajesh Sharma

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Beschreibung

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.


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.


Highlights the basics and applications of nonlinear optical materials in relation to all-optical switching applications Includes advanced nonlinear optical characterization methods single- and dual-arm Z-scan, pump-probe & beam deflection Discusses optical nonlinearities in semiconductors, organic molecules, and challenges in all-optical switching devices

Autor*in

Rajesh Sharma

Themen in »Nonlinear Optical Materials for All-Optical Switching Applications«

Nonlinear Optical Effects Nonlinear Absorption and Refraction Ultrafast Laser Beam Frequency-Resolved Optical Gating (FROG) Spectral Phase Interferometry Pump-probe Experiment Optical Nonlinearities in Semiconductors Spin-based Dichroism Nanocrystal Quantum Dots

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Details

ISBN: 9789819659210
Verlag: Springer Singapore
Erscheinung: 24.06.2025

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