Guided-Wave Acousto-Optics

Guided-Wave Acousto-Optics
Author: Chen S. Tsai
Publisher: Springer Science & Business Media
Total Pages: 330
Release: 2013-12-01
Genre: Science
ISBN: 364275225X

The field of integrated- or guided-wave optics has experienced significant and continuous growth since its inception in the late 1960s. There has been a considerable increase in research and development activity in this field worldwide and some significant advances in the realization of working in tegrated optic devices and modules have been made in recent years. In fact, there have already been some commercial manufacturing and technical ap plications of such devices and modules. The guided-wave-acoustooptics involving Bragg interactions between guided optical waves and surface acoustic waves is one of the areas of in tegrated-optics that has reached some degree of scientific and technological maturity. This topical volume is devoted to an in-depth treatment of this emerging branch of science and technology. Presented in this volume are concise treatments on bulk-wave acoustooptics, guided-wave optics, and surface acoustic waves, and detailed studies of guided-wave acoustooptic Bragg diffraction in three promising material substrates, namely, LiNb0 , 3 ZnO/Si0 , and GaAs, the resulting wide band modulators and deflectors, 2 and applications. The chapters cover not only the basic principles and the oretical analysis, but also the design, fabrication, and measurement of the resulting devices and modules, and their applications.

Guided-Wave TeO2 Acousto-Optic Devices

Guided-Wave TeO2 Acousto-Optic Devices
Author:
Publisher:
Total Pages: 39
Release: 1991
Genre:
ISBN:

In this research program, Guided-wave TeO2 Acousto-Optic Devices, the properties of surface acoustic waves on tellurium dioxide single crystal surfaces has been studied for its potential applications as acousto-optic signal processing devices. Personal computer based numerical method has been utilized for searching of useful surface acoustic waves and for theoretical investigation of the properties of surface acoustic waves on tellurium dioxide crystal substrate. Particular emphasis is on the finding and exploration of slow surface acoustic waves for long delay time signal processing applications. The investigation also includes study of surface acoustic wave interaction with laser beams after total internal reflection beneath the surface of the crystal substrate. The usefulness of such interaction for optical signal processing applications is also investigated in comparison to similar devices using the bulk slow shear waves in TeO2. Based on theoretical study results, several TeO2 substrate have ben prepared. Surface acoustic waves have been launched onto these sample substrate using edge coupled shear wave transducers. Experiments has been conducted for surface acoustic wave interaction with laser beams. Use of the acousto-optic probe, the surface acoustic wave velocity and field distribution have been obtained and compared to theoretical data. A 70 micro- second bulk slow shear wave acousto-optic beam deflector has been fabricated for comparison. Advantages of the surface acoustic wave beam deflector over bulk wave deflectors are considered. Potential applications as well as areas for further developments are recommended for a phase II development program.

Guided Wave Optical Components and Devices

Guided Wave Optical Components and Devices
Author: Bishnu P. Pal
Publisher: Academic Press
Total Pages: 482
Release: 2006
Genre: Technology & Engineering
ISBN:

Optical fibers are found in virtually every aspect of telecommunications networks today. Optical components and devices are a subject of critical knowledge in the light that many companies are trying to consolidate their efforts in terms of developing new components, rather than systems/networks. Guided Wave Optical Components and Devices offers a broad introduction to this divergent field. This book will be unique in that it is presented at a level for graduate students and newcomer practitioners. It will occupy a spot that had previously been left empty on library and store shelves. This sin.

Fundamentals of Optical Waveguides

Fundamentals of Optical Waveguides
Author: Katsunari Okamoto
Publisher: Elsevier
Total Pages: 578
Release: 2010-08-04
Genre: Technology & Engineering
ISBN: 0080455069

Fundamentals of Optical Waveguides is an essential resource for any researcher, professional or student involved in optics and communications engineering. Any reader interested in designing or actively working with optical devices must have a firm grasp of the principles of lightwave propagation. Katsunari Okamoto has presented this difficult technology clearly and concisely with several illustrations and equations. Optical theory encompassed in this reference includes coupled mode theory, nonlinear optical effects, finite element method, beam propagation method, staircase concatenation method, along with several central theorems and formulas. Since the publication of the well-received first edition of this book, planar lightwave circuits and photonic crystal fibers have fully matured. With this second edition the advances of these fibers along with other improvements on existing optical technologies are completely detailed. This comprehensive volume enables readers to fully analyze, design and simulate optical atmospheres. Exceptional new chapter on Arrayed-Waveguide Grating (AWG) In-depth discussion of Photonic Crystal Fibers (PCFs) Thorough explanation of Multimode Interference Devices (MMI) Full coverage of polarization Mode Dispersion (PMD)

Acousto-optic Interactions

Acousto-optic Interactions
Author:
Publisher:
Total Pages: 536
Release: 1976
Genre:
ISBN:

New devices are described which are based on optical waveguides on lithium niobate crystals, using the material anisotropy, including couplers, electro-optic modulator and light multiplexer, and optical deflector and scanner using collinear acousto-optic interaction between surface acoustic waves and optical surface waves. Complete theory for the propagating modes and coupled modes is presented. A new type of waveguide is presented for use with surface acoustic wave devices for real-time direct scanning and Fourier transform scanning of optical images, which introduces no additional transmission loss over that for unguided propagation. Test pattern results demonstrate the ability of this type of waveguiding to increase the transverse resolution of such scanners, and good correlation between theoretical and experimental results is shown.

Guided Wave Optical Components and Devices

Guided Wave Optical Components and Devices
Author: Bishnu Pal
Publisher:
Total Pages: 472
Release: 2010
Genre:
ISBN:

The book provides a comprehensive, lucid, and clear introduction to the world of guided wave optical components and devices. Bishnu Pal has collaborated with some of the greatest minds in optics to create a truly inclusive treatise on this contemporary topic. Written by leaders in the field, this book delivers cutting-edge research and essential information for professionals, researchers, and students on emerging topics like microstructured fibers, broadband fibers, polymer fiber components and waveguides, acousto-optic interactions in fibers, higher order mode fibers, nonlinear and parametric process in fibers, revolutionary effects of erbium doped and Raman fiber amplifiers in DWDM and CATV networks, all-fiber network branching component technology platforms like fused fiber couplers, fiber gratings, and side-polished fiber half-couplers, arrayed waveguides, optical MEMS, fiber sensing technologies including safety, civil structural health monitoring, and gyroscope applications.

Foundations for Guided-Wave Optics

Foundations for Guided-Wave Optics
Author: Chin-Lin Chen
Publisher: John Wiley & Sons
Total Pages: 482
Release: 2006-09-11
Genre: Science
ISBN: 0470042214

A classroom-tested introduction to integrated and fiber optics This text offers an in-depth treatment of integrated and fiber optics, providing graduate students, engineers, and scientists with a solid foundation of the principles, capabilities, uses, and limitations of guided-wave optic devices and systems. In addition to the transmission properties of dielectric waveguides and optical fibers, this book covers the principles of directional couplers, guided-wave gratings, arrayed-waveguide gratings, and fiber optic polarization components. The material is fully classroom-tested and carefully structured to help readers grasp concepts quickly and apply their knowledge to solving problems. Following an overview, including important nomenclature and notations, the text investigates three major topics: Integrated optics Fiber optics Pulse evolution and broadening in optical waveguides Each chapter starts with basic principles and gradually builds to more advanced concepts and applications. Compelling reasons for including each topic are given, detailed explanations of each concept are provided, and steps for each derivation are carefully set forth. Readers learn how to solve complex problems using physical concepts and simplified mathematics. Illustrations throughout the text aid in understanding key concepts, while problems at the end of each chapter test the readers' grasp of the material. The author has designed the text for upper-level undergraduates, graduate students in physics and electrical and computer engineering, and scientists. Each chapter is self-contained, enabling instructors to choose a subset of topics to match their particular course needs. Researchers and practitioners can also use the text as a self-study guide to gain a better understanding of photonic and fiber optic devices and systems.

Frontiers in Guided Wave Optics and Optoelectronics

Frontiers in Guided Wave Optics and Optoelectronics
Author: Bishnu Pal
Publisher: BoD – Books on Demand
Total Pages: 694
Release: 2010-02-01
Genre: Technology & Engineering
ISBN: 9537619826

As the editor, I feel extremely happy to present to the readers such a rich collection of chapters authored/co-authored by a large number of experts from around the world covering the broad field of guided wave optics and optoelectronics. Most of the chapters are state-of-the-art on respective topics or areas that are emerging. Several authors narrated technological challenges in a lucid manner, which was possible because of individual expertise of the authors in their own subject specialties. I have no doubt that this book will be useful to graduate students, teachers, researchers, and practicing engineers and technologists and that they would love to have it on their book shelves for ready reference at any time.