The Physics Of Opto Electronic Materials

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The Physics of Opto-Electronic Materials

Author : Walter Albers
Publisher : Unknown
Page : 300 pages
File Size : 40,6 Mb
Release : 2014-01-15
Category : Electronic
ISBN : 146841948X

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The Physics of Opto-Electronic Materials by Walter Albers Pdf

The Physics of Opto-Electronic Materials

Author : Walter Albers
Publisher : Springer Science & Business Media
Page : 288 pages
File Size : 44,5 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9781468419474

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The Physics of Opto-Electronic Materials by Walter Albers Pdf

The papers in this volume represent most of the contributions to the Symposium on the Physics of Opto-Electronic Materials held at the General Motors Research Lab oratories in Warren, Michigan, on October 4, 5 and 6, 1970. The purpose of this Symposium was to examine the current status of knowledge related to the controlled alteration of the optical properties of solids through exter nally-applied agencies, with the aim of assessing possible future directions of scientific effort to achieve efficient, practical control of light. Since the advent of the laser, the scientific community has been motivated to explore, with a renewed vigor, methods of modulating light, and in the last decade several applications of the electrooptic effect in single crystal solids have been real ized. During this same period of time the list of recognized optical modulation ef fects in solids (exclusive of the ordinary electrooptic effects) has grown rapidly, and recently dramatic demonstrations of light modulation by liquid crystal and ferro electric ceramic materials have captured the attention of the scientific community. Unlike the single-crystal electrooptic effects which are quite suitable for modulation of coherent laser light, these latter materials promise relatively inexpensive approaches to the modulation of light from ordinary incoherent light sources. It was these new vistas of light modulation - and how they fit into our current understanding of the optical properties of solids - that the symposium addressed.

Micro- and Opto-Electronic Materials and Structures: Physics, Mechanics, Design, Reliability, Packaging

Author : Ephraim Suhir,Y.C. Lee,C.P. Wong
Publisher : Springer Science & Business Media
Page : 1471 pages
File Size : 54,8 Mb
Release : 2007-05-26
Category : Technology & Engineering
ISBN : 9780387329895

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Micro- and Opto-Electronic Materials and Structures: Physics, Mechanics, Design, Reliability, Packaging by Ephraim Suhir,Y.C. Lee,C.P. Wong Pdf

This handbook provides the most comprehensive, up-to-date and easy-to-apply information on the physics, mechanics, reliability and packaging of micro- and opto-electronic materials. It details their assemblies, structures and systems, and each chapter contains a summary of the state-of-the-art in a particular field. The book provides practical recommendations on how to apply current knowledge and technology to design and manufacture. It further describes how to operate a viable, reliable and cost-effective electronic component or photonic device, and how to make such a device into a successful commercial product.

Advances in Optoelectronic Materials

Author : Shadia Jamil Ikhmayies,Hatice Hilal Kurt
Publisher : Springer Nature
Page : 276 pages
File Size : 45,5 Mb
Release : 2021
Category : Electronics
ISBN : 9783030577377

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Advances in Optoelectronic Materials by Shadia Jamil Ikhmayies,Hatice Hilal Kurt Pdf

This book focuses on the progress in optoelectronic materials research and technologies, presenting reviews and original works on the theory, fabrication, characterization, and applications of optoelectronic materials. The chapters discuss preparation and properties of several optoelectronic materials, such as ZnO, SnO2, Zn1-XSnXO, BaTiO3, GaAs, GaP, ZnSe, and NaAlSi. The structural, optical, vibrational, and magnetic properties are discussed, in addition to transport and phase transformations.

Materials for Optoelectronics

Author : Maurice Quillec
Publisher : Springer Science & Business Media
Page : 404 pages
File Size : 44,5 Mb
Release : 1996-01-31
Category : Technology & Engineering
ISBN : 0792396650

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Materials for Optoelectronics by Maurice Quillec Pdf

Optoelectronics ranks one of the highest increasing rates among the different industrial branches. This activity is closely related to devices which are themselves extremely dependent on materials. Indeed, the history of optoelectronic devices has been following closely that of the materials. KLUWER Academic Publishers has thus rightly identified "Materials for Optoelectronics" as a good opportunity for a book in the series entitled "Electronic Materials; Science and Technology". Although a sound background in solid state physics is recommended, the authors have confined their contribution to a graduate student level, and tried to define any concept they use, to render the book as a whole as self-consistent as possible. In the first section the basic aspects are developed. Here, three chapters consider semiconductor materials for optoelectronics under various aspects. Prof. G. E. Stillman begins with an introduction to the field from the point of view of the optoelectronic market. Then he describes how III-V materials, especially the Multi Quantum Structures meet the requirements of optoelectronic functions, including the support of microelectronics for optoelectronic integrated circuits. In chapter 2, Prof.

Handbook of Organic Materials for Optical and (Opto)Electronic Devices

Author : Oksana Ostroverkhova
Publisher : Elsevier
Page : 832 pages
File Size : 42,5 Mb
Release : 2013-08-31
Category : Technology & Engineering
ISBN : 9780857098764

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Handbook of Organic Materials for Optical and (Opto)Electronic Devices by Oksana Ostroverkhova Pdf

Small molecules and conjugated polymers, the two main types of organic materials used for optoelectronic and photonic devices, can be used in a number of applications including organic light-emitting diodes, photovoltaic devices, photorefractive devices and waveguides. Organic materials are attractive due to their low cost, the possibility of their deposition from solution onto large-area substrates, and the ability to tailor their properties. The Handbook of organic materials for optical and (opto)electronic devices provides an overview of the properties of organic optoelectronic and nonlinear optical materials, and explains how these materials can be used across a range of applications. Parts one and two explore the materials used for organic optoelectronics and nonlinear optics, their properties, and methods of their characterization illustrated by physical studies. Part three moves on to discuss the applications of optoelectronic and nonlinear optical organic materials in devices and includes chapters on organic solar cells, electronic memory devices, and electronic chemical sensors, electro-optic devices. The Handbook of organic materials for optical and (opto)electronic devices is a technical resource for physicists, chemists, electrical engineers and materials scientists involved in research and development of organic semiconductor and nonlinear optical materials and devices. Comprehensively examines the properties of organic optoelectronic and nonlinear optical materials Discusses their applications in different devices including solar cells, LEDs and electronic memory devices An essential technical resource for physicists, chemists, electrical engineers and materials scientists

2D Materials for Photonic and Optoelectronic Applications

Author : Qiaoliang Bao,Hui Ying Hoh
Publisher : Woodhead Publishing
Page : 336 pages
File Size : 45,9 Mb
Release : 2019-10-19
Category : Science
ISBN : 9780128154359

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2D Materials for Photonic and Optoelectronic Applications by Qiaoliang Bao,Hui Ying Hoh Pdf

2D Materials for Photonic and Optoelectronic Applications introduces readers to two-dimensional materials and their properties (optical, electronic, spin and plasmonic), various methods of synthesis, and possible applications, with a strong focus on novel findings and technological challenges. The two-dimensional materials reviewed include hexagonal boron nitride, silicene, germanene, topological insulators, transition metal dichalcogenides, black phosphorous and other novel materials. This book will be ideal for students and researchers in materials science, photonics, electronics, nanotechnology and condensed matter physics and chemistry, providing background for both junior investigators and timely reviews for seasoned researchers. Provides an in-depth look at boron nitride, silicene, germanene, topological insulators, transition metal dichalcogenides, and more Reviews key applications for photonics and optoelectronics, including photodetectors, optical signal processing, light-emitting diodes and photovoltaics Addresses key technological challenges for the realization of optoelectronic applications and comments on future solutions

The Physics of Opto-electronic Materials

Author : Walter A. Albers
Publisher : Unknown
Page : 0 pages
File Size : 41,6 Mb
Release : 1971
Category : Electronic
ISBN : OCLC:256541540

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The Physics of Opto-electronic Materials by Walter A. Albers Pdf

Introduction to Organic Electronic and Optoelectronic Materials and Devices

Author : Sam-Shajing Sun,Larry R. Dalton
Publisher : CRC Press
Page : 1069 pages
File Size : 42,6 Mb
Release : 2016-10-03
Category : Technology & Engineering
ISBN : 9781466585119

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Introduction to Organic Electronic and Optoelectronic Materials and Devices by Sam-Shajing Sun,Larry R. Dalton Pdf

This book covers the combined subjects of organic electronic and optoelectronic materials/devices. It is designed for classroom instruction at the senior college level. Highlighting emerging organic and polymeric optoelectronic materials and devices, it presents the fundamentals, principle mechanisms, representative examples, and key data.

Nano-Optoelectronics

Author : Marius Grundmann
Publisher : Springer Science & Business Media
Page : 442 pages
File Size : 53,7 Mb
Release : 2012-12-06
Category : Science
ISBN : 9783642561498

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Nano-Optoelectronics by Marius Grundmann Pdf

Traces the quest to use nanostructured media for novel and improved optoelectronic devices. Leading experts - among them Nobel laureate Zhores Alferov - write here about the fundamental concepts behind nano-optoelectronics, the material basis, physical phenomena, device physics and systems.

Semiconductor Nanostructures for Optoelectronic Applications

Author : Todd D. Steiner
Publisher : Artech House
Page : 438 pages
File Size : 43,5 Mb
Release : 2004
Category : Technology & Engineering
ISBN : 1580537529

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Semiconductor Nanostructures for Optoelectronic Applications by Todd D. Steiner Pdf

Annotation Tiny structures measurable on the nanometer scale (one-billionth of a meter) are known as nanostructures, and nanotechnology is the emerging application of these nanostructures into useful nanoscale devices. As we enter the 21st century, more and more professional are using nanotechnology to create semiconductors for a variety of applications, including communications, information technology, medical, and transportation devices. Written by today's best researchers of semiconductor nanostructures, this cutting-edge resource provides a snapshot of this exciting and fast-changing field. The book covers the latest advances in nanotechnology and discusses the applications of nanostructures to optoelectronics, photonics, and electronics.

Semiconductor Optoelectronic Devices

Author : Joachim Piprek
Publisher : Elsevier
Page : 296 pages
File Size : 52,9 Mb
Release : 2013-10-22
Category : Technology & Engineering
ISBN : 9780080469782

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Semiconductor Optoelectronic Devices by Joachim Piprek Pdf

Optoelectronics has become an important part of our lives. Wherever light is used to transmit information, tiny semiconductor devices are needed to transfer electrical current into optical signals and vice versa. Examples include light emitting diodes in radios and other appliances, photodetectors in elevator doors and digital cameras, and laser diodes that transmit phone calls through glass fibers. Such optoelectronic devices take advantage of sophisticated interactions between electrons and light. Nanometer scale semiconductor structures are often at the heart of modern optoelectronic devices. Their shrinking size and increasing complexity make computer simulation an important tool to design better devices that meet ever rising perfomance requirements. The current need to apply advanced design software in optoelectronics follows the trend observed in the 1980's with simulation software for silicon devices. Today, software for technology computer-aided design (TCAD) and electronic design automation (EDA) represents a fundamental part of the silicon industry. In optoelectronics, advanced commercial device software has emerged recently and it is expected to play an increasingly important role in the near future. This book will enable students, device engineers, and researchers to more effectively use advanced design software in optoelectronics. Provides fundamental knowledge in semiconductor physics and in electromagnetics, while helping to understand and use advanced device simulation software Demonstrates the combination of measurements and simulations in order to obtain realistic results and provides data on all required material parameters Gives deep insight into the physics of state-of-the-art devices and helps to design and analyze of modern optoelectronic devices

Physics of Optoelectronics

Author : Michael A. Parker
Publisher : CRC Press
Page : 766 pages
File Size : 51,6 Mb
Release : 2018-10-03
Category : Technology & Engineering
ISBN : 9781420027716

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Physics of Optoelectronics by Michael A. Parker Pdf

Physics of Optoelectronics focuses on the properties of optical fields and their interaction with matter. Understanding that lasers, LEDs, and photodetectors clearly exemplify this interaction, the author begins with an introduction to lasers, LEDs, and the rate equations, then describes the emission and detection processes. The book summarizes and reviews the mathematical background of the quantum theory embodied in the Hilbert space. These concepts highlight the abstract form of the linear algebra for vectors and operators, supplying the "pictures" that make the subject more intuitive. A chapter on dynamics includes a brief review of the formalism for discrete sets of particles and continuous media. It also covers the quantum theory necessary for the study of optical fields, transitions, and semiconductor gain. This volume supplements the description of lasers and LEDs by examining the fundamental nature of the light that these devices produce. It includes an analysis of quantized electromagnetic fields and illustrates inherent quantum noise in terms of Poisson and sub-Poisson statistics. It explains matter-light interaction in terms of time-dependent perturbation theory and Fermi's golden rule, and concludes with a detailed discussion of semiconductor emitters and detectors.